{"id":645,"date":"2025-01-15T09:42:33","date_gmt":"2025-01-15T08:42:33","guid":{"rendered":"https:\/\/research.dii.unipd.it\/chemamse\/?page_id=645"},"modified":"2025-01-15T11:25:42","modified_gmt":"2025-01-15T10:25:42","slug":"vito-di-noto","status":"publish","type":"page","link":"https:\/\/research.dii.unipd.it\/chemamse\/vito-di-noto\/","title":{"rendered":"Vito Di Noto"},"content":{"rendered":"<div data-label=\"DiNoto\" data-id=\"about--1\" data-export-id=\"about-10\" data-category=\"about\" class=\"about-10 content-section content-section-spacing\" id=\"dinoto\"><div class=\"gridContainer\"> <div class=\"row middle-sm text-center\"><div class=\"col-sm-5 space-bottom-xs content-column\" data-type=\"column\">  <h2 class=\"\"><span style=\"font-family: Playfair Display,sans-serif;font-weight: 700;font-style: italic\">Prof. Vito\n<br>Di Noto, Ph.D.<\/span><\/h2>  <\/div> <div class=\"col-sm-7 flexbox middle-xs center-xs space-bottom-xs\"><div class=\"overlay-box middle-xs center-xs flexbox\"> <div class=\"overlay-box-offset offset-border shadow-medium border-color1 hide-xs\"><\/div> <img decoding=\"async\" class=\"shadow-large\" data-size=\"485x705\" src=\"https:\/\/research.dii.unipd.it\/chemamse\/wp-content\/uploads\/sites\/52\/2022\/11\/cropped-servlet-1.jpg\" title=\"cropped-servlet-1.jpg\" alt=\"\"><\/div> <\/div><\/div> <\/div><\/div><div data-label=\"Positions\" data-id=\"content--1\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"positions\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\"> <h2 class=\"\">CURRICULUM VITAE ET STUDIORUM\n<br><br>\nProf. Vito Di Noto<\/h2> <p class=\"lead\" style=\"text-align: justify\">Present Positions:\t\n<br>\u2013\tFull Professor of Electrochemistry for Energy and Solid-State Chemistry in the Department of Industrial Engineering of the University of Padova, Italy.<br>\n\u2013\tHead of the Section of Chemistry for Technology in the same Department; founder and team leader of the \u201cChemistry of Materials for the Metamorphosis and the Storage of Energy \u2013 CheMaMSE\u201d group.<br>\n\u2013\tFellow of the Electrochemical Society (ECS) and recipient of the Energy Technology Division (ETD) Award 2022 of ECS. Japan Society for the Promotion of Science Fellow.<br>\n\u2013\tPast President of the Division of Electrochemistry and Coordinator of the Interdivisional Group for \u201cChemistry of the Accumulation and the Conversion of Electrochemical Energy\u201d of the Italian Chemical Society.<br>\n\u2013\tChair of the Publications Committee of ISE.<br><br>\nOffice Address:\n<br>Department of Industrial Engineering, University of Padova, Via Marzolo 9, 35131 Padova, Italy<br>\nContacts:\tPhone: +39 049 827 5229; e-mail address: vito.dinoto@unipd.it<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div><div data-label=\"Resume\" data-id=\"content--2\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"resume\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\">  <p class=\"lead\" style=\"text-align: justify\"><span style=\"font-weight: 700\">EDUCATION<\/span><br>\nB.S.\/M.S.\t\tChemistry (full marks), University of Padova, Academic Year 1985\/1986;<br>\nPh.D. \t\t\tChemistry, University of Padova, 1992.\n<br><br><span style=\"font-weight: 700\">\nNATIONAL FULL<\/span> <span style=\"font-weight: 700\">PROFESSOR HABILITATIONS<\/span>&nbsp;<br>\n18\/12\/2013\t\t\u2013 Industrial Chemistry (03\/C2);<br>\n23\/12\/2013\t\t\u2013 Inorganic Chemistry (Fundamentals of Chemical Sciences; 03\/B1);<br>\n29\/01\/2014\t\t\u2013 Physical Chemistry (Models and Methods for Chemical Sciences; 03\/A2);<br>\n17\/02\/2014\t\t\u2013 Chemistry for Technologies (03\/B2).\n<br><br><span style=\"font-weight: 700\">\nPROFESSIONAL EXPERIENCE<\/span><br>\n2015-\tFull Professor of Solid State Chemistry and Chemistry for Energy at the Department of Industrial Engineering of the University of Padova, Italy;<br>\n2002-2015\tProfessor of Solid State Chemistry and Chemistry for Energy at the Department of Chemical Sciences of the University of Padova,  Italy;<br>\n1992-2002\tResearcher at the Department of Inorganic, Metallorganic and Analytical Chemistry of the University of Padova, Italy.\n<br><br><i>\nThe scientific performance of prof. V. Di Noto&nbsp;(December 2024)<\/i>:<br>\na)\t360 published papers: 305 are peer-reviewed papers (ISI+SCOPUS), 14 are book chapters, 31 patents (13 international and 18 national, 13 were sold) and 13 are papers on proceedings.<br>\nb)\t411 meeting contributions including:<br>&nbsp; &nbsp; &nbsp;i.\t266 oral presentations in international symposia, among which 122 are invited: 90 invited, 21 Keynotes and 11 Plenary Lectures;<br>&nbsp; &nbsp; &nbsp;ii.\t43 oral presentations in national meetings, of which 7 are invited.<br>&nbsp; &nbsp; &nbsp;iii.\t12 poster presentations in national meetings.<br>\nc)\tEditor of 1 book of \u201cElectrocatalysis for Membrane Fuel Cells: Methods, Modeling, and Applications\u201d, Pages 1 \u2013 558, Wiley (2023). ISBN: 978-352783057-2, 978-352734837-4, DOI: 10.1002\/9783527830572.<br>\nh-index = 56 (Google Scholar), more than 10760 citations. h-index = 52 (Scopus), more than 8678 citations. h-index = 48 (ISI), more than 8068 citations.<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div><div data-label=\"ResearchActivity\" data-id=\"content--9\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"researchactivity\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\"> <h2 class=\"\">Research Activity<\/h2> <p class=\"lead\" style=\"text-align: justify\">The main achievements of the research activity carried out by Prof. Di Noto are summarized in the following five main topics:\n<br><br>\n<span style=\"font-weight: 700\">Topic I<\/span> &#8211; <span style=\"font-style: italic\">Electrolyte and electrode materials for fuel cells of the type PEMFCs (Polymer Electrolyte Membrane Fuel Cells), AEMFCs (Anion Exchange Membrane Fuel Cells), HT-PEMFCs (High-Temperature Proton Exchange Membrane Fuel Cells), DAFCs (Direct Alcohol Fuel Cells), and for PEM electolyzers (since 1999);<\/span><br><br>\nThe aim of this research was focused on the synthesis and the study of:<br>\na)\tproton-conducting and anion-conducting ionomers, both conventional and hybrid inorganic-organic, mainly based on Nafion, for application in PEMFCs;<br>\nb)\telectrocatalysts (ECs) based on transition metals supported on carbon-nitride conductive matrices (CN) and electrode configurations for the fabrication of membrane-electrode assemblies (MEAs). These materials were developed for application in PEM electrolysers and low-temperature PEMFCs.\n<br><br>\nThese activities led to the development of:<br>\na)\tnew hybrid inorganic-organic Nafion-based electrolytes, characterized by an excellent performance in single PEMFC;<br>\nb)\tnew mono\/plurimetallic carbon nitride-based electrocatalysts of the \u201ccore-shell\u201d type based on PGM and Non-PGM, characterized by a high Oxygen Reduction Reaction (ORR) performance and durability in fuel cells;<br>\nc)\tnew membranes and electrocatalysts for passive direct methanol fuel cells with a high efficiency.\n<br><br>\n<span style=\"font-weight: 600\">Most relevant results of topic I<\/span><br>\n<span style=\"font-style: italic\">Electrocatalysts for Oxygen Reduction Reactions (ORR):<\/span><br>\n1.\tDevice and preparation for the first time of new ORR ECs with a \u201ccore-shell\u201d morphology consisting of a conducting \u201ccore\u201d and a \u201cshell\u201d of a carbon-nitride matrix supporting Pt and Pd active sites. These systems, @ 0.9V vs RHE, show an \u201cex-situ\u201d specific surface activity for Pt and Pd based ECs, which is up to ca. 13 and 1.6 times higher than that of Pt\/C ref., respectively. These materials, when tested in single fuel cells under operating conditions, required 0.045 and 0.45 g of Pt and Pd, respectively, to deliver 1kW of Power.<br>\n2.\tThe effect of different parameters, such as precursors used in the synthesis, composition of pre-catalysts, and pyrolysis processes, were elucidated.<br>\n3.\tThe interplay between the composition, oxidation states of metal active sites in alloy nanoparticles (NPs), structure and electrochemical performance was clarified. It was demonstrated, for the first time, that the best ECs of this class consist of a \u201cshell\u201d of carbon-nitride matrix (CN) which presents: a N concentration lower than 5wt% with N located exclusively in metal coordination \u201cnests\u201d; active sites on metal alloy NPs which are well exposed to reagents (good accessibility of reagents to sites).<br>\nProton and Anionic Exchange Membranes<br>\n<span style=\"font-style: italic\">Proton Exchange Membranes (PEMs)<\/span><br>\n1.\tNew hybrid inorganic-organic membranes based on Nafion and suitable \u201ccore-shell\u201d inorganic nanofillers were obtained. These membranes present: (i) an improved conductivity at high temperatures (up to 7.0 \u00d7 10\u22122 S cm\u22121 at 115 \u00b0C; in the same conditions, pristine Nafion has a conductivity of 3.3 \u00d7 10\u22122 S cm\u22121); and (ii) an interesting implementation in single fuel cells running at low hydration degrees.<br>\n2.\tThe interplay between the structure, thermo-mechanical transitions and electric response of membranes was fully clarified. These studies permitted to propose an unitary model which allowed to reconcile the structural features and the nano-morphological reorganizations of host polymer domains with the phenomena responsible of thermo-mechanical and electrical relaxations. Thus, for the first time, a crucial basic background is provided for designing new materials and for understanding the conductivity mechanisms of ionomers.<br>\n<span style=\"font-style: italic\">Anion Exchange Membranes (AEM)<\/span><br>\n1.\tThe interactions and the thermo-mechanical and electrical relaxations characterizing the structure and the properties of these materials were elucidated.<br>\n2.\tIn these materials, for the first time, a new solid-state transition, indicated as T\uf064, was detected. T\uf064 is the temperature of the AEM at which a disorder-order transition occurs. It modulates the electrical and mechanical properties of membranes.<br>\n3.\tA totally new family of AEMs were developed, based on polyketone backbones.\n<br><br>\n<span style=\"font-weight: 700\">Topic II<\/span> &#8211; <span style=\"font-style: italic\">Polymer electrolytes and innovative electrode materials for the reversible storage of electrical energy in secondary lithium and magnesium batteries (since 1992).\n<\/span><br>\nThe research activity in this area was focused on the preparation and the study of:<br>\na)\thybrid inorganic-organic Li- and Mg-based electrolytes for batteries and sensors; new classes of materials and synthetic approaches were proposed;<br>\nb)\telectrode materials for the development of rechargeable magnesium batteries;<br>\nc)\thybrid inorganic-organic electrolytes with a transport number close to 1 for lithium batteries (Lithium Single-Ion Conducting Materials);<br>\nd)\tAll-solid-state electrolytes based on fluorinated titanium oxide and molten lithium.<br>\ne)\telectrolytes based on ionic liquids doped with inorganic NPs which are neutralized on the surface with lithium ions;<br>\nf)\t3D-concatenated electrolytes through halide bridges based on \uf064-MgCl2 and ionic liquids for reversible magnesium batteries.\n<br><br>\n<span style=\"font-weight: 600\">Most relevant results of topic II<\/span><br>\n1.\tThe development of the first prototypes of operating secondary magnesium batteries;<br>\n2.\tthe development of the first synthesis protocol for preparation of hybrid ion-conducting inorganic-organic materials of the Z-IOPE family (Z-IOPE: Zeolitic Inorganic Organic Polymer Electrolytes) by a sol\u2192gel\u2192plastic reaction starting from precursors consisting of transition metal complexes instead of metal alkoxides;<br>\n3.\tthe preparation of the first ceramic nano-fillers, which consist of inorganic anionic nanoparticles (macroanions) neutralized on the surface with lithium cations, to use in the preparation of electrolytes. These electrolytes, which showed a unity transference number, are characterized by a high lithium ion conductivity and are very stable when contacted directly with solid metallic lithium at the anode of the batteries;<br>\n4.\tthe preparation of magnesium electrolytes characterized by large exchange currents and high reversibility at the magnesium metallic anode.\n<br><br>\n<span style=\"font-weight: 700\">Topic III<\/span> &#8211; <span style=\"font-style: italic\">Study of the electric response of ion-conducting, electric and dielectric materials by broadband electrical spectroscopy (BES) (since 1994).\n<\/span><br>\nBES studies allowed to define the phenomena underlying the electrical response of ion-conducting, dielectric and semiconducting materials and to propose a mechanism for their operation.\n<br><br>\n<span style=\"font-weight: 600\">Most relevant results of topic III<\/span><br>\n1.\tIn cationic and anionic exchange membranes for applications in fuel cells, it was found that the electric response is modulated in \u201cwet\u201d conditions by the polarization phenomena and in the \u201cdry\u201d state by the dielectric relaxations corresponding to: (a) the segmental motions; and (b) the local fluctuations of the dipole moments of chemical functionalities of polymer matrix.<br>\n2.\tIn polymer electrolytes based on polyethylene oxide for lithium and magnesium batteries, it was demonstrated that the electric response depends on the electrode polarization event and on the segmental motions associated to both the chains coordinating the metal ion (\uf061ion, slow relaxation mode) and those \u201cfree\u201d (\uf061fast, fast relaxation mode), i.e. the chains not coordinating the metal ions.<br>\n3.\tIn materials based on ionic liquids, it was revealed that the electric response is regulated by the polarization phenomena, thus demonstrating that the nanostructure of these systems plays a crucial role in modulating their electrical properties.<br>\n4.\tIn dielectric and semiconducting materials, it was determined that the electric response is correlated to the dipolar relaxation modes associated to the chemical functionalities typical of these materials.\n<br><br>\n<span style=\"font-weight: 700\">Topic IV<\/span> &#8211; <span style=\"font-style: italic\">Environmental and BioInorganic Chemistry (from 1992 to 1994);\n<\/span><br>\n In the framework of this topic, prof. Vito Di Noto contributed to:<br>\na)\tthe development and the application of models and methods for the study of the [receptor] \u2013 [inorganic complex] interactions;<br>\nb)\tthe synthesis of platinum coordination complexes characterized by anticancer activity;<br>\nc)\tthe development of methods for the analysis and the study of the spatial distribution of chemical elements in the environment.\n<br><br>\n<span style=\"font-weight: 600\">Most relevant results of topic IV<\/span><br>\nThe main results include the synthesis and the characterization of platinum complexes characterized by anticancer activity; the development of thermodynamic theoretical models for the study of the binding interactions [metal ion complex] \u2013 [supramolecular system] and the start up and coordination of an innovative laboratory for the sequential and simultaneous analysis of the elements in environmental and biological samples by means of Inductively-Coupled Plasma Atomic Emission Spectroscopy (ICP-AES) mounting both a Meinhard and an Ultrasonic Nebulizer. The environmental studies were carried out in the framework of a project proposed and funded by the Department of the Environment of Venice.\n<br><br>\n<span style=\"font-weight: 700\">Topic V<\/span> &#8211; <span style=\"font-style: italic\">High-yield heterogeneous catalysis of the Ziegler-Natta type for polymerization of olefins (from 1990 to 1992).\n<\/span><br>\nFrom 1990 to 1992, prof. Di Noto carried out studies on high-yield Ziegler-Natta catalysis for the polymerization of olefins. In particular, he prepared and studied by means of spectroscopic techniques and wide- and small-angle powder X-ray diffraction, a large number of supported third-generation Ziegler-Natta catalysts. These materials were also tested in the olefin polymerization reaction.<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div><div data-label=\"Projects\" data-id=\"content--4\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"projects\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\"> <h2 class=\"\">Research Projects<\/h2> <p class=\"lead\" style=\"text-align: justify\">Principal Investigator of the following research projects:<br>\na)\tPRAT 2001: Scientific equipment for Research projects \u2013 Polymer electrolyte fuel cells: inorganic-organic hybrid polymer electrolytes and innovative electrodic systems (24 months).<br>\nb)\tPRAT 2011: Advanced nano-electrocatalysts for ethanol oxidation in direct ethanol fuel cells (24 months).<br>\nc)\tStrategic Project of the University of Padova: \u201cFrom Materials for Membrane-Electrode Assemblies to Electric Energy Conversion and Storage Devices\u201d (MAESTRA). From 1st January 2014 (36 months).<br>\nd)\tEuropean \u201cGraphene Flagship\u201d: GRAFUS Project n\u00b0 14-GRPH-196 within the \u201cGraphene Flagship\u201d of the 7th framework program \u201cGraphene-Based Revolutions in ICT and Beyond\u201d (Project: 604391). From 1st October 2014 (18 months). TRL 2-4<br>\ne)\tEuropean \u201cGraphene Flagship\u201d: Project \u201cGraphene Core 1 \u2013 Graphene-based disruptive technologies\u201d n\u00b0 H2020-Adhoc-2014-20 within the \u201cGraphene Flagship\u201d of Horizon 2020 (Project: 696656). Activities carried out in the workpackage \u201cEnergy Generation\u201d. From 1st April 2016 (24 months). TRL 3-5<br>\nf)\t\u201cDevelopment, characterization and tests in prototype devices of ion-exchange membranes for next-generation redox flow batteries\u201d, project funded by ENI S.p.A.; CUP: C56J15001560007, code D_N_COMM6_01. This is a \u201ccommercial\u201d project. From 1st July 2016 (initially 24 months, extended to 48 months).<br>\ng)\t\u201cAdvanced electrolytes for next-generation Anion-Exchange Membrane Fuel Cells\u201d (AGNI), project funded by the University of Padova in the framework of the BIRD 2016 action; protocol: BIRD164837\/16. From 1st January 2017 (24 months).<br>\nh)\tEuropean \u201cGraphene Flagship\u201d: Project \u201cGraphene Flagship Core Project 2\u201d n\u00b0 H2020-SGA-FET-GRAPHENE-2017 within the \u201cGraphene Flagship\u201d of Horizon 2020 (Project: 785219). Activities carried out in the workpackage \u201cEnergy Generation\u201d. From 1st April 2018 (24 months). TRL 5-7<br>\ni)\t\u201cBatterie a flusso di nuova generazione: preparazione, caratterizzazione e test in dispositivi-prototipo di membrane a scambio ionico ad elevata selettivit\u00e0 ed integrazione di sistema con fonti primarie intermittenti\u201d (Next-generation redox flow batteries: preparation, characterization and test in prototype devices of high-selectivity ion-exchange membranes and system integration with intermittent primary sources). Project funded by ENI S.p.A., contract 2500026228; the financial aspects of this project are handled by INSTM in the project INDPD01581. This is an \u201cinstitutional\u201d project. From 5 September 2018 to 4 November 2019 (14 months).<br>\nj)\t \u201cSingle-tank\u201d, \u201csingle-pass\u201d redox flow battery systems with an innovative architecture and approach to operation. Project funded by FUJIFILM MANUFACTURING EUROPE B.V.; the financial aspects of this project are handled by INSTM in the project INDPD01588. This is an \u201cinstitutional\u201d project. From 01 November 2018 to 31 October 2019 (12 months).<br>\nk)\t \u201cSviluppo di membrane a scambio ionico ad elevate selettivit\u00e0 per applicazioni in batterie a flusso di nuova generazione\u201d (Development of high-selectivity ion-exchange membranes for application in next-generation redox flow batteries). Project funded by ENI S.p.A., contract 2500026228; the financial aspects of this project are handled by INSTM in the project INDPD01779. This is an \u201cinstitutional\u201d project. From 20 January 2020 to 20 November 2021 (23 months).<br>\nl)\tEuropean \u201cGraphene Flagship\u201d: Project \u201cGraphene Flagship Core Project 3\u201d n\u00b0 H2020-SGA-FET-GRAPHENE-2019 within the \u201cGraphene Flagship\u201d of Horizon 2020 (Project: 881603). Activities carried out in the workpackage \u201cEnergy Generation\u201d. From 1st April 2020 (42 months). TRL 6-8<br>\nm)\tAdvanced Low-Platinum hierarchical Electrocatalysts for low-T fuel cells (ALPE), Upscaling project funded by EIT Raw Materials. From 1 January 2020 (53 Months).<br>\nn)\tOptimization of a process for the synthesis of LiPF6 for electrochemical applications (Ottimizzazione di un processo per la sintesi di LiPF6 per applicazioni elettrochimiche). Project funded by Fluorsid Alkeemia, contract 1919; the financial aspects of this project are handled by INSTM. From 30th April 2021 (36 months).<br>\no)\tDevelopment of innovative materials for application in secondary sodium batteries (Sviluppo di materiali innovativi per applicazioni in batterie secondarie al sodio). Project funded by SoNick S.p.A. From 1st October 2021 (12 months).<br>\np)\tDevelopment of innovative materials for application in secondary sodium batteries (Sviluppo di materiali innovativi per applicazioni in batterie secondarie al sodio). Project funded by SoNick S.p.A. From 1st July 2023 (12 months).<br>\nq)\tPRIN 2022: \u201cAlkaline membrane\u2013electrode assemblies for fuel cells (ALEF)\u201d. Protocol: 2022PYXHYL. From 1st October 2023 (24 months).<br>\nr)\tPNRR: \u201cHydrogen Mobility Made in Italy: High H2\/O2 Back Pressure Stack for LEGO-like Upscalable PEMFCs for Heavy Duty Transportation (HYMOBITALY)\u201d. Scalability Grant of the Italian PNRR, National Centre for Sustainable Mobility, Spoke 14 \u2013 Hydrogen and New Fuels. From 1st October 2023 (12 months).<br>\ns)\t\u201cDURAble, Scalable, and Recyclable Components and Cell Designs for Next Generation Alkaline Exchange Membrane Water Electrolysis (DURALYS)\u201d. Italian-German project funded by the Italian Ministry of International Collaboration. From 1st January 2025 (36 months).\n<br><br>\nLocal coordinator of the following projects:<br><i>\nNational projects<\/i>:<br>\na)\tex 60% of University of Padova: Electroactive materials and polymer electrolytes for the production and the reversible storage of energy and for the development of sensors: synthesis, studies and applications (since 1998).<br>\nb)\tFISR 1999: \u201cElectrolityc Materials and innovative electrodic systems for polymeric fuel cells\u201d. (24 months). Principal investigator: prof. B. Scrosati.<br>\nc)\tPRIN 2000: \u201cElectrochemical, vibrational and morphological characterization of polymer-based films for the development of transducers and transistors for gas and vapour sensors\u201d. Protocol: MM03025954_004. From 20th December 2000 (24 months). Principal investigator: prof. P. G. Zambonin.<br>\nd)\tFISR 2001: \u201cDevelopment of composite protonic membranes and of innovative electrodic configurations for polymer electrolyte fuel cells\u201d. (42 months). Principal investigator: prof. B. Scrosati.<br>\ne)\tPRIN 2002: \u201cSynthesis of hybrid inorganic-organic thin films for sensors and studies with vibrational and broad-band dielectric spectroscopies of the correlations between the functionality and the molecular dynamics\u201d. Protocol: 2002037994_003. From 16th December 2002 (24 months). Principal investigator: prof. P. G. Zambonin.<br>\nf)\tPRIN 2004: \u201cPolymers and hydrogels based on inorganic-organic hybrids for electroactive and dielectric thin films\u201d. Protocol: 2004034021_006. From 30th November 2004 (24 months). Principal investigator: prof. P. G. Zambonin.<br>\ng)\tPRIN 2006: \u201cDirect methanol fuel cells for portable electronics. Synthesis and study in prototype cells of hybrid inorganic-organic membranes and electrode materials\u201d. Protocol: 2006092700_003. From 9th February 2007 (24 months). Principal investigator: prof. P. Bettini.<br>\nh)\tPRIN 2008: \u201cDirect polymer electrolyte membrane fuel cells: synthesis and study in prototype cells of hybrid inorganic-organic membranes and electrode materials\u201d. Protocol: 200832JRN_004. From 22nd March 2010 (24 months). Principal investigator: prof. A. Stella.<br>\ni)\tALADIN \u2013 \u201cNuova generazione di sistemi di illuminazione\/segnalazione intelligenti ad alta efficienza che incorporano generazione ed accumulo energetico\u201d, project code EE01_00003. Aladin has been funded in the framework of the Italian program \u201cIndustria 2015. From 1st May 2009 (28 months).<br>\nj)\tExploiting interplay between bacteria and microalgae for simultaneous wastewater removal and biorefinery: a microbial fuel cell proof-of-concept (EXOTICA). From 1st October 2016 (24 months). Principal investigator: prof. P. Mustarelli.<br>\nk)\tHierarchical electrocatalytsts with a low platinum loading for low-temperature fuel cells (HELPER). Project funded in the framework of the \u201cBando UNI-IMPRESA 2018\u201d. From 1st March 2019 (24 months).<br>\nl)\tAlkaline Membranes and Platinum-free catalysts Enabling innovative, open electRochemical devices for Energy storage and conversion (AMPERE). Protocol: FISR2019_01294. Project funded in the framework of \u201cBando  FISR 2019\u201d. From 1st March 2021 (30 months).<br>\nm)\tUNIPD participant of \u201cSpoke 6 \u2013 Energy Storage\u201d of \u201cNEST \u2013 NETWORK 4 ENERGY SUSTAINABLE TRANSITION \u2013 SCENARI ENERGETICI DEL FUTURO\u201d, funded by Italian PNRR. From 1 September 2022 (36 months).<br>\nn)\tSpoke Leader for UNIPD of \u201cSpoke 14 \u2013 Hydrogen and New Fuels\u201d of \u201cCentro Nazionale per la Mobilit\u00e0 Sostenibile\u201d, funded by Italian PNRR. From 1 September 2022 (36 months).<br>\no)\t\u201cORgANics for Green Electrochemical Energy Storage \u2013 ORANGEES\u201d. From 25th May 2023 (36 months).<br>\np)\t\u201cDiagnostic train, hydrogen-fueled for inspection and functional verification during motion of the rail transport infrastructures and quality control \u2013 DHINAMIC\u201d, funded by Italian PNRR. From 1 June 2024 (16 months).<br>\nq)\t\u201cH2: Energy vector for railways transportation; homologation, environment, and safety \u2013 HERMES\u201d, funded by Italian PNRR. From 1 July 2024 (14 months).\n<br><br><i>\nInternational projects<\/i>\na)\t\u201cInterplay between relaxations and structure in anion-exchange membranes (AES) by broadband electrical spectroscopy (BES), thermomechanical and vibrational studies\u201d, (contract n\u00b0 W911NF-13-10400) in the framework of the MURI project \u201cAn Integrated Multi-Scale Approach for Understanding Ion Transport in Complex Heterogeneous Organic Materials\u201d, project funded by the Army Research Office, Principal Investigator: Prof. A. Herring (Colorado School of Mines, Golden, CO, USA) (72 months).<br>\nb)\t\u201cVersatile Ionomers for DIvalent CAlcium baTteries \u2013 VIDICAT\u201d FET-Open call of Horizon 2020, Project 829145, From 1st March 2019 (48 months). Principal Investigator: Prof. Jean-Yves Sanchez, University \u201cCharles III\u201d of Madrid, Spain.<br>\nc)\t\u201cInterplay between structure, properties, relaxations and conductivity mechanism in new electrolytes for secondary Magnesium batteries\u201d, Project funded by the Army Research Office of the U.S. Army.  From 19 August 2021 (36 Months).<br>\nd)\tStorage Research Infrastructure Eco-System \u2013 StoRIES. Project funded in the framework of the call \u201cLC-GD-9-1-2020 \u2013 European Research Infrastructures capacities and services to address European Green Deal challenges\u201d. From 1st November 2021 (48 months).<br>\ne)\tCRM-geothermal: Raw materials from geothermal fluids: occurrence, enrichment, extraction \u2013 CRM-geothermal. Project Number: 101058163; Call: HORIZON-CL4-2021-RESILIENCE-01; topic: HORIZON-CL4-2021-RESILIENCE-01-06. From 1 June 2022 (48 months).<br>\nf)\tEducational Learning Modules on Li-ion batteries (ELMO-LION), Education project funded by EIT Raw Materials. From 1 September 2022 (40 Months).<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div><div data-label=\"Collaborations\" data-id=\"content--10\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"collaborations\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\"> <h2 class=\"\">Collaborations<\/h2> <p class=\"lead\" style=\"text-align: justify\"><span style=\"font-style: italic\">International Academic Collaborations<\/span><br>\n1. Karlsruhe Institute of Technology, Germany (Prof. Stefano Passerini);<br>\n2. Physics Department, School of Engineering Science, LUT-University, Lappeenranta, Finland (Prof. Bernardo Barbiellini);<br>\n3. Helmholtz Zentrum Potsdam Deutschesgeoforschungszentrum GFZ, Potsdam, German (Dr. Katrin Kieling, Dr. Simona Regenspurg, Dr. Joerg Zotzmann);<br>\n4. FUNDACION CIDETEC, Spain (Prof. Luis C\u00e9sar Colmenares);<br>\n5. Institut Charles Gerhardt Montpellier, France (Prof. Laure Monconduit);<br>\n6. LEPMI, France (Prof. Cristina Iojoiu);<br>\n7. Grenoble-INP, France (Prof. Marian Chatenet);<br>\n8. University of Lorraine, Nantes, France (Prof. Olivier Lottin);<br>\n9. University College London, London, United Kingdom (Prof. Paul McMillan, Prof. Dan Brett, Prof. Cecilia Mattevi);<br>\n10. Imperial College London, London, United Kingdom (Prof. Milo Shaffer);<br>\n11. Technical University of Dresden, Dresden, Germany (Dr. Ali Shaygan Nia);<br>\n12. University of Giessen, Germany (Prof. Juergen Janek)<br>\n13. Institute for Frontier Materials, Deakin University, Australia (Prof. M. Forsyth);<br>\n14. Physics Department, U.S. Naval Academy, Annapolis, MD, USA (prof. J.J. Fontanella and M. Wintersgill);<br>\n15. Energy Institute, Hunter College of CUNY, New York, NY, USA (prof. S. Greenbaum);<br>\n16. Department of Chemistry, Science University of Tokyo, Japan (prof. T. Furukawa, prof. S. Kobayashi);<br>\n17. University of Montpellier, France (prof. Nicolas Alonso-Vante, Prof Fr\u00e9d\u00e9ric Jaouen).<br>\n18. PECS Department, Medgar Evers College, New York, NY, USA (prof. M. Vittadello);<br>\n19. Tokyo University of Agriculture and Technology, Tokyo, Japan (prof. H. Ohno, prof. Y. Tominaga);<br>\n20. Institute for Chemical Research, Kyoto University, Japan (prof. S. Kohjiya);<br>\n21. Graduate School of Engineering, Yokohama National University, Japan (prof. M. Watanabe);<br>\n22. Japan Advanced Institute of Science and Technology, Sendai, Japan (prof. N. Matsumi);<br>\n23. Department of Ceramics and Materials Engineering, Rutgers University, Piscataway, NJ, USA (prof. A. Safari);<br>\n24. Chemistry Department, Max Planck Institute for Solid-State Research, Stuttgart, Germany (dr. K. D. Kreuer);<br>\n25. Research Centre Juelich, Germany (prof. W. Lehnert, prof. D. Stolten);<br>\n26. Fraunhofer Institut f\u00fcr Silicatforschung, W\u00fcrzburg, Germany (prof. M. Popall);<br>\n27. Zentrum f\u00fcr Sonnenenergie und Wasserstoff Forschung, Ulm, Germany (prof. J. Garche);<br>\n28. Department of Technical Physics, Chalmers University of Technology, Gotheborg, Sweden (prof. P. Johansson);<br>\n29. Department of Materials Science and Engineering, University Charles III of Madrid, Spain (prof. J. Y. Sanchez, Prof. A. Varez Alvarez);<br>\n30. Department of Chemical and Biomolecular Engineering, University of Tennessee, Knoxville, USA (prof. T. Zawodzinski and prof. S. J. Paddison);<br>\n31. Department of Chemical and Biomolecular Engineering, Department of Mechanical, Aerospace, and Biomedical Engineering, University of Tennessee, Knoxville, (prof M. M. Mench);<br>\n32. Department of Polymer Science and Engineering, University of Massachusetts, Amherst, MS, USA (prof. B. Coughlin);<br>\n33. Chemical and Biological Engineering Department, Colorado School of Mines, Golden, CO, USA (prof. A. Herring);<br>\n34. CEA, Grenoble, France (prof. G. Gebel, Dr. Marie Heitzmann, Dr. Fabrice Micoud);<br>\n35. Faculty of Chemistry, University of Warsaw, Poland (prof. P. J. Kulesza, Prof. I. A. Rutkowska);<br>\n36. Department of Electrical and Electronic Technology, Faculty of Electrical Engineering and Communication, Brno University of Technology, Czech Republic (prof. M. Sedlarikova);<br>\n37. Department of Chemistry and Chemical Biology, Northeastern University, Boston, MS, USA (prof. S. Mukerjee);<br>\n38. Department of Physics, Northeastern University, Boston, MS, USA (prof. B. Barbiellini);<br>\n39. The Henry Samueli School of Engineering, University of California, Irvine, USA (prof. P. Atanassov);<br>\n40. Los Alamos National Laboratories, USA (Prof. P. Zelenay);<br>\n41. Bar-Ilan University, Israel (Prof. Lior Elbaz);<br>\n42. The Wolfson Department of Chemical Engineering, Technion \u2013 Israel Institute of Technology, Haifa, Israel (Prof. Dario Dekel);<br>\n43. Vanderbilt University, USA (Prof. Peter Pintauro);<br>\n44. Lawrence Berkeley National Laboratory , USA (Dr. Adam Weber, Dr. Ahmet Kusoglu);<br>\nOak Ridge National Laboratories, USA (Dr. David Cullen).\n<br><br>\n<span style=\"font-style: italic\">National Academic Collaborations<\/span><br>\n1. Italian Institute of Technology, Genova (dr. F. Bonaccorso, dr. V. Pellegrini, dr. M. Prato);<br>\n2. Department of Physics, Politecnico di Milano (Prof. Rafael Ferragut);<br>\n3. Department of Chemistry, University of Roma \u201cLa Sapienza\u201d (prof. B. Scrosati e Dr.ssa M. A. Navarra);<br>\n4. Department of Molecular Sciences and Nanosystems, University of Venezia (prof. S. Polizzi);<br>\n5. CRS4, Pula, Italy (dr. D. Hofmann);<br>\n6. Department of Energy, Politecnico di Milano, Italy (Prof. Ellie Paillard);<br>\n7. Department of Civil, Environmental and Mechanical Engineering, University of Trento (prof. M. Fauri);<br>\n8. Department of Materials Engineering and Industrial Technologies, University of Trento (prof. G. Sorar\u00f9, prof. R. Di Maggio);<br>\n9. University of Rome \u201cTor Vergata\u201d, Department of Electronics Engineering (Prof. Aldo Di Carlo);<br>\n10. Department of Applied Science and Technology, Politecnico di Torino (Prof. Claudio Gerbaldi);<br>\n11. Department of Chemistry, University of Pavia (prof. E. Quartarone);<br>\n12. Department of Industrial Engineering, University of Padova (prof. A. Bertucco, prof. M. Guarnieri, prof. A. Natali);<br>\n13. Department of Materials Science, University of Milano-Bicocca (prof. P. Mustarelli, prof. R. Ruffo, Dr. Carlo Santoro);<br>\n14. Department of Civil, Energy, Environmental, and Materials Engineering, Universit\u00e0 Mediterranea di Reggio Calabria (Prof. Saveria Santangelo);<br>\n15. National Research Council, Institute for Microelectronics and Microsystems, Bologna, Italy (Dr. Andrea Migliori, Dr. Vittorio Morandi);<br>\n16. CNR-ICCOM, Florence (Dr. Francesco Vizza, Dr. Hamish Miller, Dr. Alessandro Lavacchi).<br>\n17. CNR-ITAE, Messina (Dr. Vincenzo Baglio).<br>\nCNR-ICMATE, Padova (Dr. Davide Barreca, Dr. Laura Crociani).\n<br><br>\n<span style=\"font-style: italic\">International Industrial Collaborations<\/span><br>\n1. Fuel Cell Program, 3M Company, St. Paul, MN, USA (Dr. G. Haugen, Dr. S. Hamrock, Dr. R. Atanasoski);<br>\n2. FuMA-Tech GmbH, St. Ingbert (Saarland), Germany (Dr. M. Schuster).<br>\n3. SCHMIDLIN Labor+Service AG (Sarbach Neuheim Switzerland).<br>\n4. FUJIFILM MANUFACTURING EUROPE B. V., The Neatherlands (Dr. Henk Jongerden, Dr. Jacko Hessing).<br>\n5. ERAS LABO, France (Dr. Lionel Ogier).<br>\n6. Toyota Motor Europe, Belgium (Dr. Isotta Cerri, Dr. Stephane Cotte)<br>\n7. Amalyst, United Kingdom (Dr. David Hodgson)\n<br><br>\n<span style=\"font-style: italic\">National Industrial Collaborations<\/span><br>\n1. SoNick S.p.A. (Montecchio Maggiore, Dr. Giovanni Zola);<br>\n2. Fluorsid Alkeemia S.p.A. (Porto Marghera, Venezia, Dr. Luca Pala, Dr. Fabrizio Caschili)<br>\n3. ENI S.p.A. (Novara, Dr. Laura Meda, Dr. Chiara Gambaro);<br>\n4. Centro Ricerche Giulio Natta; MONTELL S.p.A. (Ferrara);<br>\n5. ECP-Enichem Polimeri (Ferrara);<br>\n6. Agusta (Milano);<br>\n7. Cryvet (Treviso);<br>\n8. Automation Progetti (Padova);<br>\n9. Spectro (Milano);<br>\n10. Breton S.p.A., Castello di Godego, Treviso (Dr. S. Zeggio);<br>\n11. Strumenti Scientifici CINEL s.r.l., Vigonza, Padova (Dr. E. Bongiovanni);<br>\n12. COFI s.r.l., Castagnole, Treviso (Dr. L. Comin);<br>\n13. TEXA S.p.A., Monastier, Treviso (Dr. C. Nogarino);<br>\n14. SILYSIAMONT, Milano (Dr. R. Gallina).<br>\n15. FIAMM Group, Montecchio Maggiore, Vicenza (Dr. G. Lodi)<br>\n16. RIELLO, Legnago, Verona (Dr. E. Zambolin)<br>\n17. Newa Tecno Industria s.r.l., Loreggia, Padova (Dr. G. Guoli)<br>\nCentro ricerche Fiat, Orbassano, Torino (Dr. Stefano Pullini, Dr. Mauro Sgroi)<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div><div data-label=\"Visiting\" data-id=\"content--11\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"visiting\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\"> <h2 class=\"\">Activities as Visiting Professor<\/h2> <p class=\"lead\" style=\"text-align: justify\">Prof. Vito Di Noto was visiting professor in several universities and research institutions:<br>\na) In the late \u201880\u2019s, he carried out research activity at the Hamburg Synchrotron (DESY), as a guest of prof. H. G. Zachmann of the Department of Macromolecular Chemistry.<br>\nb) June-August 2001, he was in the Physics Department, U.S. Naval Academy, Annapolis, MD, USA, invited by prof. J. J. Fontanella to investigate the effect of pressure on the conduction mechanisms of polymer electrolytes by Broadband Electrical spectroscopy;<br>\nc) June-July 2002, he was in the Physics Department, Hunter College of City University of New York (CUNY), NY, USA, invited by prof. S. Greenbaum, for studies on the diffusion coefficients of polymer electrolytes measured by solid-state NMR spectroscopy;<br>\nd) January-March 2002 he carried out research activities in Japan as invited \u201cvisiting professor\u201d in the framework of the \u201cJapan Society for Promotion of Science (JSPS) Invitation Fellowship Program for Research in Japan\u201d. In this occasion, he gave seminars in the following universities and research institutions: Institute of Chemical Research of Kyoto University; Department of Biotechnology, Tokyo University of Agriculture &amp; Technology; Department of Chemistry and Biotechnology, Yokohama National University; Department of Chemistry Tokyo University of Science (TUS);<br>\ne) In September 2007 he was in Tokyo University of Agriculture and Technology, Japan, invited by prof. H. Ohno, in order to carry out studies on polymer electrolytes doped with ionic liquids;<br>\nf) August-September 2007 and December 2008 he was in the Department of Chemistry, Tokyo University of Science, Japan, invited by prof. T. Furukawa, in order to carry out studies on proton- and lithium-conducting polymer electrolytes by Broadband Electrical Spectroscopy up to 15 GHz.<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div><div data-label=\"Roles\" data-id=\"content--7\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"roles\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\"> <h2 class=\"\">Achievements and Institutional Roles<\/h2> <p class=\"lead\" style=\"text-align: justify\"><i>SCIENTIFIC CITATIONS<\/i><br>\nTwo of the papers published by prof. Vito Di Noto in 1997 were reviewed by international divulgation journals: (1)\tV. Di Noto, M. Mecozzi, Appl. Spectrosc. 51 (1997) 1294, was reviewed by Photonics Spectra (February 1998); (2) V. Di Noto, J. Mater. Res. 12 (1997) B393, was reviewed by Platinum Metal Reviews (vol.42, (2), April 1998).<br>\nTwo of the papers published in the context of high yield Ziegler-Natta heterogeneous catalysts were included in the group of 271 papers, published between 1956 and 1998, making supported Ziegler-Natta catalysis one of the four \u201cbreakthroughs\u201d of the chemistry for humankind (E. P. Moore \u201cThe rebirth of polypropylene: Supported Catalysis\u201d, Hanser Publishers, M\u00fcnich, 1998). The cited papers are: (1) n\u00b0 247 \u2013 V. Di Noto et al., Makromol. Chem. 193 (1992) 1653; and (2) n\u00b0 248 \u2013 V. Di Noto et al., Makromol. Chem. 193 (1992) 123.\n<br><br><i>\nCOVERS OF JOURNALS<\/i><br>\n1.\tThe journal \u201cMacromolecular Chemistry and Physics\u201d has dedicated the cover of Volume 203 of 2002 to the following publication: V. Di Noto et al., Macromol. Chem. Phys. 203 (2002) 354;<br>\n2.\tThe journal \u201cChemSusChem\u201d has dedicated the cover of Volume 8(18) of 2015 to the following publication: F. Bertasi, V. Di Noto et al., ChemSusChem 8 (2015) 3069;<br>\n3.\tThe journal \u201cAdvanced Functional Materials\u201d has dedicated the cover of Volume 26(27) of 2016 to the following publication: F. Bertasi, V. Di Noto et al., Adv. Funct. Mater. 26 (2016) 4860.<br>\n4.\tThe \u201cJournal of Applied Polymer Science\u201d dedicated the cover of Volume 135, Issue 13 to the following publication: S. Todros, P. G. Pavan, P. Pachera, G. Pace, V. Di Noto, A. N. Natali, J. Appl. Polym. Sci. 135 (2018) 46014.<br>\n5.\tThe \u201cJournal of Materials Chemistry A\u201d dedicated the inside back cover of Issue 48, 2020 to the following publication: High valence transition metal-doped olivine cathodes for superior energy and fast cycling lithium batteries, G. Pagot, M. Bandiera, K. Vezz\u00f9, A. Migliori, R. Bertoncello, E. Negro, V. Morandi, V. Di Noto, J. Mater. Chem. A 8 (2020) 25727. The inside back cover is cited as in the following: J. Mater. Chem. A 8 (2020) 26175 https:\/\/doi.org\/10.1039\/D0TA90289F\n<br><br><i>\nINVITED PAPERS<\/i><br>\nHe was invited to write five papers (two Editorials and three Forewords) by the Organizing Committee of the \u201cISPE-12\u201d and \u201cISPE-13\u201d international conferences (International Symposia on Polymer Electrolytes), to provide an overview on the development of the research in the topic of polymer electrolytes. He was also the Guest Editor of the Special Issues of the journals \u201cElectrochimica Acta\u201d and \u201cThe International Journal of Hydrogen Energy\u201d dedicated to the \u201cISPE-12\u201d and \u201cISPE-13\u201d international conferences.<br>\nHe was invited by the Organizers of the Symposium \u201cAdvanced Materials for Energy Applications\u201d (held in the framework of the international conference \u201cAMPT-15\u201d, hosted in Madrid, Spain on 14-17 December 2015) to write the Foreword of the Virtual Special Issue of the Journal \u201cElectrochimica Acta\u201d dedicated to that Symposium, which he also co-edited.<br>\nHe was invited by the International Society of Solid State Ionics (ISSI) to write an Editorial to provide an overview on the development of the research in the topic of solid state ionic conductors, to be published on the Special Issue of the Elsevier journal \u201cSolid State Ionics\u201d dedicated to the 21st International Conference on Solid State Ionics (SSI-21) held in Padova, Italy on 18-23 June 2017. He was also invited to write the Foreword of the same Special Issue, where he is also the Managing Guest Editor.<br>\nHe was invited to submit one paper to the Special Issue of the journal \u201cChemElectroChem\u201d of Wiley entitled: \u201cNon-Precious-Metal ORR Catalysis\u201d. The paper is entitled: \u201c(Co, Ni)Sn0.5 rparticles supported on hierarchical CN-graphene-based electrocatalysts for the oxygen reduction reaction\u201d and was published on ChemElectroChem 5 (2018) 2029-2040.<br>\nHe was invited to submit one paper to the Themed Issue of Physical Chemistry Chemical Physics \u201cBunsentagung 2019: Functional Materials\u201d. The paper is entitled \u201cStructural analyses of blended Nafion\/PVDF electrospun nanofibers\u201d and was published on Phys. Chem. Chem. Phys. 21 (2019) 10357-10369.<br>\nHe is also one of the Guest Editors of the \u201cFocus Issue on Heterogeneous Functional Materials for Energy Conversion and Storage\u201d of the Journal of the Electrochemical Society, that is open to receive contributions between 25 July and 23 October 2019.<br>\nHe is also one of the Guest Editors of the \u201cFocus Issue on Heterogeneous Functional Materials for Energy Conversion and Storage\u201d of the Journal of the Electrochemical Society.<br>\nHe is the Guest Editor of the Special Issue \u201cChallenges of Batteries in the Post Li-Ion Era\u201d of the MDPI Journal \u201cBatteries\u201d. The Special Issue is open to receive contributions between 1 April 2020 and 30 November 2020.<br>\nHe was invited to submit one review on magnesium batteries, which was published on the Journal of Power Sources as in the following: R. Dominko, J. Bitenc, R. Berthelot, M. Gauthier, G. Pagot, V. Di Noto, Magnesium batteries: current picture and missing pieces of the puzzles, J. Power Sources 478, 229027 (2020). DOI: 10.1016\/j.jpowsour.2020.229027.<br>\nHe is one of the Editors of the Vol. 98, no. 10 of the ECS Transactions. The volume is entitled \u201cMolten Salts and Ionic Liquids 22\u201d and it was published in 2020 (ISBN-print: 1938-5862). The full list of the Editors of the volume is as follows: D. P. Durkin, P. C. Trulove, A. Bund, A. Ispas, V. Di Noto, W. M. Reichert, R. A. Mantz, H. C. De Long, M. Mizuhata, M. Ueda.<br>\nHe is one of the Editors of the Vol. 109, no. 14 of the ECS Transactions. The volume is entitled \u201cMolten Salts and Ionic Liquids 23\u201d and it was published in 2022 (ISBN-online: 1938-6737). The full list of the Editors of the volume is as follows: D. P. Durkin, P. C. Trulove, A. Bund, A. Ispas, V. Di Noto, W. M. Reichert, R. A. Mantz, H. C. De Long, T. Tsuda, M. Ueda.<br>\nHe was invited to publish a contribution to the Special Issue of the Wiley Journal \u201cChemElectroChem\u201d (Online ISSN: 2196-0216) entitled \u201cIn Memoriam: Prof. Jean-Michel Sav\u00e9ant\u201d. In this Special Issue, Di Noto published the paper entitled \u201cInterplay between Conductivity, Matrix Relaxations and Composition of Ca-Polyoxyethylene Polymer Electrolytes\u201d as ChemElectroChem 8 (2021) 2459-2466.<br>\nHe is the Lead Guest Editor of the Special Issue of Electrochimica Acta \u201cAnd Yet Electrochemical Energy Storage and Conversion Moves in 2021\u201d, which is open to receive manuscript from 20 March to 20 September 2021.\n<br><br><i>\nEditorials<\/i>:<br>\n1.\tV. Di Noto, S. Lavina, G. A. Giffin, E. Negro, B. Scrosati. \u201cPolymer electrolytes: Present, past and future\u201d, Electrochim. Acta 57 (2011) 4;<br>\n2.\tV. Di Noto, T. A. Zawodzinski, A. M. Herring, G. A. Giffin, E. Negro, S. Lavina. \u201cPolymer electrolytes for a hydrogen economy\u201d, Int. J. Hydrog. Energy 37 (2012) 6120.\n<br><br><i>\nForewords<\/i>:<br>\n1.\tV. Di Noto, \u201cForeword 12th International Symposium on Polymer Electrolytes (ISPE-12)\u201d, Electrochim. Acta, 57 (2011) 1;<br>\n2.\tV. Di Noto, \u201cForeword\u201d, Int. J. Hydrogen Energy 37 (2012) 6119;<br>\n3.\tV. Di Noto. \u201cISPE\u201313 Foreword\u201d, Int. J. Hydrogen Energy 39 (2014) 2715;<br>\n4.\tV. Di Noto, J. Y. Sanchez, A. Var\u00e9z Alvarez. \u201cForeword\u201d, Electrochim. Acta, 245 (2017), 1075.<br>\n5.\tV. Di Noto, \u201cPreface: 21st International Conference on Solid State Ionics\u201d, Solid State Ionics 329 (2019) 155.<br>\n6.\tD. Guyomard, V. Di Noto, M. Forsyth, P. Poizot, T. Rojo, K. Zaghib, B. Lucht, D. Aurbach, Preface \u2014 JES Focus Issue on Challenges in Novel Electrolytes, Organic Materials, and Innovative Chemistries for Batteries in Honor of Michel Armand, Journal of The Electrochemical Society, 167 (2020) 070001<br>\n7.\tD. Aurbach, T. F. Fuller, D. E. Cliffel, W. K. S. Chiu, V. Di Noto, S. Goplan, N. Liu, A. H. Suroviec, Preface-JES Focus Issue on Heterogeneous Functional Materials for Energy Conversion and Storage, J. Electrochem. Soc. 167, 050001 (2020). DOI: 10.1149\/1945-7111\/ab84fe<br>\n8.\tP. J. Kulesza, F. Nobili, S. Dsoke, V. Di Noto, I. A. Rutkowska, Foreword to the memorial issue for Professor Roberto Marassi, J. Solid State Electrochem. (2021). DOI: 10.1007\/s10008-021-05099-2\n<br><br>\nProf. Vito Di Noto acted as co-editor and contributed an overview on electrocatalysis in the Summer 2015 Issue of the quarterly ECS magazine \u201cInterface\u201d, as follows:<br>\n1.\tEditorial: A. M. Herring, V. Di Noto, \u201cElectrochemical Energy Conversion\u201d;<br>\n2.\tContribution: V. Di Noto, E. Negro, K. Vezz\u00f9, F. Bertasi, G. Nawn, \u201cOrigins, Developments and Perspectives of Carbon Nitride-Based Electrocatalysts for Application in Low-Temperature FCs\u201d.\n<br><br>\nProf. Vito Di Noto provided a contribution on hydrogen policy in the EU in the Winter 2021 Issue of the quarterly ECS magazine \u201cInterface\u201d as follows:<br>\n1.\tP. Atanassov, V. Di Noto, S. McPhail, From Hydrogen Manifesto, through Green Deal and Just Transition, to Clean Energy Act, The Electrochemical Society Interface, Winter 2021, 30, 57-60 (2021). DOI: 10.1149.2\/2.F14214IF\n<br><br><i>\nEDITORIAL BOARDS<\/i><br>\n1.\tProf. Vito Di Noto was voted to join and is in the Advisory Board of \u201cElectrochimica Acta\u201d (Publisher: Elsevier; ISSN: 0013-4686); from 1 January 2017.<br>\n2.\tHe belongs to the Editorial Advisory Board of \u201cCurrent Nanomaterials\u201d (Publisher: Bentham Science; ISSN: 2405-4623); from 25 August 2017 to 24 August 2020.<br>\n3.\tHe is Associate Editor and on the Board of the Journal \u201cFrontiers in Chemistry\u201d (Publisher: Frontiers Media S.A.; ISSN: 2296-2646), in the Electrochemistry section. From 16 July 2018.<br>\n4.\tHe is Editor of the Section \u201cEnergy, transport and environment\u201d of the journal \u201cEuropean Journal of Materials\u201d (Publisher: Taylor and Francis; ISSN: 2688-9277). From 1 January 2021.<br>\n5.\tHe was invited to join and is in the Editorial Board of \u201cIonics\u201d (Publisher: Springer; ISSN: 1862-0760\/0947-7047); from 4 May 2017.<br>\n6.\tHe belongs to the Editorial Board of \u201cBatteries\u201d (Publisher: MDPI; ISSN: ISSN 2313-0105); from 24 September 2015.<br>\n7.\tHe is an Editor of the journal \u201cReviews on Advanced Materials Science\u201d (URL: https:\/\/www.degruyter.com\/view\/j\/rams?rskey=mdaegp&amp;result=2 Publisher: De Gruyter; ISSN: 1605-8127); from 1 February 2019.<br>\n8.\tHe is on the Editorial Board of the journal \u201cBMC Materials\u201d (URL: https:\/\/bmcmaterials.biomedcentral.com\/ Publisher: Springer Nature; ISSN: 2524-8138); from February 2019.<br>\n9.\tHe is on the Editorial Board of the Journal \u201cPolymers\u201d (URL: https:\/\/www.mdpi.com\/journal\/polymers Publisher: MDPI; ISSN: 2073-4360); from April 2019.<br>\n10.\tHe is on the Editorial Board of the Journal \u201cSolids\u201d (URL: https:\/\/www.mdpi.com\/journal\/solids  Publisher: MDPI; ISSN: 2673-6497); from June 2020.<br>\n11.\tHe is on the Editorial Board of the \u201cJournal of Ionic Liquids\u201d (URL: https:\/\/www.journals.elsevier.com\/journal-of-ionic-liquids ); ISSN: 2772-4220; from July 2021.\n<br><br><i>\nACTIVITY AS REVIEWER OF INTERNATIONAL JOURNALS<\/i><br>\n1.\tAmerican Chemical Society: ACS Sustainable Chemistry and Engineering; ACS Applied Energy Materials; ACS Applied Materials and Interfaces; ACS Nano; ACS Catalysis; Analytical Chemistry; Chemistry of Materials; Journal of the American Chemical Society; Journal of Physical Chemistry A, B and C; Langmuir; Energy and Fuels; Inorganic Chemistry; Macromolecules; Small<br>\n2.\tElsevier: Applied Surface Science; Applied Catalysis B \u2013 Environmental; Catalysis Communications; Catalysis Today; Chemical Physics; Chemical Physics Letters; Coordination Chemistry Reviews; Electrochimica Acta; European Polymer Journal; Journal of Catalysis; Journal of Electroanalytical Chemistry; Journal of Physics and Chemistry of Solids; Journal of Industrial and Engineering Chemistry; Journal of Membrane Science; Journal of Non-Crystalline Solids; Journal of Supercritical Fluids; Surface and Coatings Technology; Materialia; The International Journal of Hydrogen Energy; Journal of Power Sources; Materials Science and Engineering B; Materials Chemistry and Physics; Microporous and Mesoporous Materials; Polymer; Polymer Degradation and Stability; Polyhedron; Solid State Ionics; Solid State Sciences; Vibrational Spectroscopy.<br>\n3.\tMaterials Research Society: Journal of Materials Research.<br>\n4.\tRSC Publishing: ChemComm; Chemical Science; Energy and Environmental Science; Journal of Materials Chemistry A; Nanoscale; PCCP; Polymer Chemistry; RSC Advances; Soft Matter.<br>\n5.\tSpringer: Journal of Solid-State Electrochemistry; Ionics.<br>\n6.\tThe Electrochemical Society: The Journal of the Electrochemical Society; Electrochemical and Solid-State Letters; ECS Transactions.<br>\n7.\tWiley: Advanced Energy Materials; Advanced Functional Materials; Advanced Materials; Advanced Science; Advanced Materials Interfaces; ChemCatChem; ChemElectroChem; ChemSusChem; Chemical Engineering and Technology; Energy Technology; Fuel Cells; International Journal of Energy Research; Journal of Polymer Science; Journal of Polymer Science part B; Journal of Applied Polymer Science; Macromolecular Chemistry and Physics; Macromolecular Rapid Communications; Physica Status Solidi B; Wiley Interdisciplinary Reviews: Energy and Environment; Small.<br>\n8.\tNature Publishing Group: Nature materials, Nature Communications.<br>\n9.\tOthers: The Brazilian Journal of Chemical Engineering, Energies, ISRN Spectroscopy; Journal of Nanoscience and Nanotechnology, Batteries, Catalysts.<br>\n\n<br><i>REVIEWER OF INTERNATIONAL SCIENTIFIC PROJECTS<\/i><br>\n1.\tPAZY foundation (Israel)<br>\n2.\tThe European Commission (Horizon 2020, Horizon Europe);<br>\n3.\tThe European Research Council, for Starting, Consolidator and Advanced Grants;<br>\n4.\tProgram UNA4CAREER, Universidad Complutense de Madrid, Spain;<br>\n5.\tResearch Foundation Flanders\u2019;<br>\n6.\tUnited States \u2013 Israel Binational Science Foundation;<br>\n7.\tChilean National Science and Technology Commission;<br>\n8.\tGerman-Israeli Foundation for Scientific Research and Development;<br>\n9.\tAmerican Chemical Society Petroleum Research Fund;<br>\n10.\tNational Science Center (Poland);<br>\n11.\tA*Midex (France);<br>\n12.\tNational Science Foundation (NSF);<br>\n13.\tNSERC Discovery Grants (Canada);<br>\n14.\tSwiss National Science Foundation (Switzerland).<br>\n15.\tHead of the Panel for Sub-action 2. Funding Projects in Leading-Edge Sectors \u2013 RRFQ: Basic Research Financing (Horizontal support for all Sciences) of the Hellenic Foundation for Research and Innovation.\n<br><br><i>\nORGANIZATION OF NATIONAL AND INTERNATIONAL MEETINGS AND RELATED ACTIVITIES<\/i><br>\nSince 2003, Prof. Vito Di Noto has been an Active Member of the Electrochemical Society (ECS). Since 2013, he has belonged to the Executive Committee of the Energy Technology Division (ETD) and is involved in many of the activities of ECS. He is currently a \u201cmember-at-large\u201d of the Executive Committee of both the Energy Technology Division and of the Physical and Analytical Electrochemistry Division of the ECS. In recent years, he was and is involved in the organization\/co-organization of a number of thematic sessions of ECS, as follows:<br>\n1.\t224th Meeting of the Electrochemical Society, held in San Francisco, California, USA, from 27 October to 1 November 2013, session: \u201cB12: Stationary and Large Scale Electrical Energy Storage Systems 3 \u2013 Battery Division\/Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering Division\u201d.<br>\n2.\t225th Meeting of the Electrochemical society, held in Orlando, Florida, USA, on 11-15 May 2014, sessions: \u201cA1: Batteries and Energy Technology Joint General Session \u2013 Battery Division\/Energy Technology Division\u201d; \u201cH4: Charge Transfer: Electrons, Protons, and Other Ions 2 \u2013 Physical and Analytical Electrochemistry Division\/High Temperature Materials Division\u201d; \u201cH8: Spectroelectrochemistry 2 \u2013 Physical and Analytical Electrochemistry Division\u201d.<br>\n3.\t226th Meeting of the Electrochemical Society, held in Cancun, Mexico, on 5-10 October 2014, session \u201cA2: Batteries Beyond Lithium Ion \u2013 Battery Division\/Energy Technology Division\u201d.<br>\n4.\t227th Meeting of the Electrochemical Society, held in Chicago, Illinois, USA, on 24-28 May 2015, sessions: \u201cB01: Carbon Nanostructures and Devices \u2013 Carbon Nanostructures for Energy Conversion \u2013 Nanocarbons Division\/Battery Division\/Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cB06: Graphene and Beyond: 2D Materials \u2013 Nanocarbons Division\/Dielectric Science and Technology Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL11: Structure and Relaxations in Soft Ion-Conducting Materials \u2013 Energy Technology Division\/Battery Division\/Physical and Analytical Electrochemistry Division\u201d.<br>\n5.\t228th Meeting of the Electrochemical Society, to be held in Phoenix, Arizona, USA, on 11-16 October 2015, sessions: \u201cA03: Batteries Beyond Lithium-Ion \u2013 Battery Division\/Energy Technology Division\u201d; \u201cA05: Electrolytes and Electrochemical Interfaces in Energy Storage Systems \u2013 Battery Division\/Energy Technology Division\u201d; \u201cA07: Intermetallic Anodes \u2013 Battery Division\u201d; \u201cB01 \u2013 Carbon Nanostructures: Fullerenes to Graphene \u2013 Nanocarbons Division\/ Dielectric Science and Technology Division \/ Physical and Analytical Electrochemistry Division\u201d.<br>\n6.\t229th Meeting of the Electrochemical Society, to be held in San Diego, California, USA, on 29 May \u2013 3 June 2016, sessions: \u201cA02: Future and Present Advanced Lithium Batteries and Beyond \u2013 a Symposium in the Honor of Prof. Bruno Scrosati \u2013 Battery Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cF02: Engineering the Interface between Catalysis and Electrocatalysis \u2013 Industrial Electrochemistry and Electrochemical Engineering Division\/Energy Technology division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL06: Ionic Liquids as Electrolytes \u2013 Physical and Analytical Electrochemistry Division\u201d.<br>\n7.\t230th Meeting of the Electrochemical Society, to be held in Honolulu, Hawaii, USA, on 9-14 October 2016, sessions: \u201cA05: Beyond Li-ion Batteries \u2013 Battery Division\/Physical and Analytical Electrochemistry Division\/CSE Division\u201d; \u201cA02: ECS Battery Symposium in Honor of Prof. Zempachi Ogumi: Challenges in Advanced Analytical Tools and Techniques for Batteries \u2013 Battery Division\/Energy Technology Division\u201d.<br>\n8.\t231st Meeting of the Electrochemical Society, held in New Orleans, Louisiana, USA, on 28 May-2 June 2017, sessions: \u201cA03: Battery Electrolytes \u2013 Physical and Analytical Electrochemistry Division\u201d; \u201cB01: Carbon Nanostructures for Energy Conversion \u2013 Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL02: Ion-Conducting Polymeric (or, Polymer-based) Materials \u2013 Physical and Analytical Electrochemistry Division\u201d.<br>\n9.\t232nd Meeting of the Electrochemical Society, held in National Harbor, USA, on 1-5 Oct 2017, session: \u201cL06: Physical and Analytical Electrochemistry of Ionic Liquids 6 \u2013 Physical and Analytical Electrochemistry Division\/ Energy Technology Division\/ Organic and Biological Electrochemistry Division\u201d<br>\n10.\t233rd Meeting of the Electrochemical Society, held in Seattle, WA, USA, on 13-17 May 2018, sessions \u201cA03: Li-ion Batteries and Beyond \u2013 Battery Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cB01: Carbon Nanostructures for Energy Conversion and Storage \u2013 Nanocarbons Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cI04: Materials for Low Temperature Electrochemical Systems 4 \u2013 Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL04: Charge Transfer: Electrons, Protons, and Other Ions 3 \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d; \u201cL05: Oxygen Reduction Reactions \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n11.\t234th Meeting of the Electrochemical Society\/AiMES 2018, held in Cancun, Mexico, on 30 Sept \u2013 4 Oct 2018, session \u201cA02 \u2013 Challenges in Novel Electrolytes, Organic Materials, and Innovative Chemistries for Batteries \u2013 in Honor of Michel Armand \u2013 Battery Division\/Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d.<br>\n12.\t235th Meeting of the Electrochemical Society, held in Dallas, Texas, on 26-31 May 2019, sessions \u201cB01 \u2013 Carbon Nanostructures for Energy Conversion and Storage \u2013 Nanocarbons Division\/Battery Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cB07 \u2013 Inorganic\/Organic Nanohybrids for Energy Conversion \u2013 Nanocarbons Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cI05 \u2013 Heterogeneous Functional Materials for Energy Conversion and Storage \u2013 High Temperature Materials Division\/Battery Division\/Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL04 \u2013 Polyoxometallates and Nanostructured Metal Oxides in Efficient Electrocatalysis, Energy Conversion and Charge Storage \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n13.\t236th Meeting of the Electrochemical Society, held in Atlanta, Georgia, on 13-17 October 2019, sessions \u201cA03 \u2013 Fast Electrochemical Processes and Devices 3 (Electrochemical Capacitors and Batteries) \u2013 Battery Division\/Energy Technology Division\u201d; \u201cA07 \u2013 Solid State Batteries \u2013 Battery Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cB01 \u2013 Carbon Nanostructures: From Fundamental Studies to Applications and Devices \u2013 Nanocarbons Division\/ Physical and Analytical Electrochemistry Division\u201d; \u201cL03 \u2013 Charge Transfer: Electrons, Protons, and Other Ions 4 \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n14.\tPRIME 2020, held in Honolulu, Hawaii, on 4-9 October 2020, sessions \u201cF02 \u2013 Advances in Application and Theory of Electrochemical Impedance Spectroscopy \u2013 Industrial Electrochemistry and Electrochemical Engineering Division\/Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL02 \u2013 Molten Salts and Ionic Liquids 22 \u2013 Physical and Analytical Electrochemistry Division\/Electrodeposition Division\/ Energy Technology Division\u201d; \u201cL06 \u2013 Fundamental Aspects of Electrochemical Conversion of Carbon Dioxide 2 \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\/ KECS Photoelectrochemistry\u201d.<br>\n15.\t239th Meeting of the Electrochemical Society, held in Chicago, USA, on 30 May \u2013 3 June 2021, sessions \u201cA07 \u2013 Ion Coordination and Dynamics in Battery Electrolytes, Interfaces and Interphases \u2013 Battery Division\u201d; \u201cB01 \u2013 Carbon Nanostructures for Energy Conversion and Storage \u2013 Nanocarbons Division\/Battery Division\/Energy Technology division\u201d; \u201cB06 \u2013 2D Layered Materials from Fundamental Science to Applications \u2013 Nanocarbons Division\/Dielectric Science and Technology Division\/Energy Technology Division\/Interdisciplinary Science and Technology Subcommittee\u201d; \u201cB07 \u2013 Light Energy Conversion with Metal Halide Perovskites, Semiconductor Nanostructures, and Inorganic\/Organic Hybrid Materials \u2013 Nanocarbons Division\u201d; \u201cF03 \u2013 Characterization of Porous Materials 9 \u2013 Industrial Electrochemistry and Electrochemical Engineering Division\/Energy Technology Division\u201d; \u201cL06 \u2013 Nanostructured Functional Materials for Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n16.\t240th Meeting of the Electrochemical Society, 10-14 October 2021, Digital Meeting, sessions \u201cA02 \u2013 Sodium and Lithium Intercalation Chemistry For Rechargeable Batteries \u2013 Special Symposium in Honor of Claude Delmas \u2013 Battery Division\u201d; \u201cL06 \u2013 Nitrogen Reduction \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering Division\u201d.<br>\n17.\t241st Meeting of the Electrochemical Society, 29 May \u2013 2 June 2022, sessions \u201cI06 \u2013 Heterogeneous Functional Materials for Energy Conversion and Storage 3 \u2013 High-Temperature Energy, Materials, and Processes Division\/Battery Division\/Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL04 \u2013 Redox Flow Systems for Energy Storage: New Chemical Systems and Mechanisms of Operation \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d; \u201cL05 \u2013 Mechanistic Understanding of Electrocatalytic Electrodics of Oxygen, Hydrogen, and Carbon Dioxide Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d; \u201cL06 \u2013 Electrochemistry at the Nanoscale \u2013 Physical and Analytical Electrochemistry Division\/Corrosion Division\/Energy Technology Division\u201d.<br>\n18.\t242nd Meeting of the Electrochemical Society, 9 \u2013 13 October 2022, sessions \u201cL02 \u2013 Molten Salts and Ionic Liquids 23 (MSIL-23) \u2013 Physical and Analytical Electrochemistry Division\/Electrodeposition Division\/Energy Technology Division\u201d; \u201cL03 \u2013 In Situ Electrochemical Systems 5 \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n19.\t243rd Meeting of the Electrochemical Society, 28 May \u2013 2 June 2023, sessions \u201cA06 \u2013 Solid State Batteries \u2013 Battery Division\u201d; \u201cL07 \u2013 Electrochemistry in Extreme Conditions \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering\u201d; \u201cL10 \u2013 Fundamentals of Lead Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\u201d.<br>\n20.\t244th Meeting of the Electrochemical Society, 8 \u2013 12 October 2024, sessions \u201cL04 \u2013 Physical and Analytical Electrochemistry in Ionic Liquids 6 \u2013 Physical and Analytical Electrochemistry Division\/Electrodeposition Division\/Energy Technology Division\u201d; \u201cL07 \u2013 Nanoscale Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d; \u201cL08 \u2013 Nanostructured Metal Oxides and Polyoxometallate Clusters in Electrocatalysis, Electrochemical Energy Conversion, and Storage \u2013 Physical and Analytical Electrochemistry Division\/Dielectric Science and Technology Division\u201d.<br>\n21.\t245th Meeting of the Electrochemical Society, 26-30 May 2024, session \u201cL05 \u2013 Electrochemistry at the Nanoscale 2 \u2013 Physical and Analytical Electrochemistry Division\/Electrodeposition Division\/Energy Technology Division\u201d.<br>\n22.\tPRIME 2024, Honolulu, USA, 6-11 October 2024, session \u201cL02 \u2013 Molten Salts &amp; Ionic Liquids 24 in Memory of Yasuhiko Ito \u2013 Physical and Analytical Electrochemistry Division\/Electrodeposition Division\/Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering Division\u201d.\n<br><br>\nProf. Vito Di Noto chaired\/co-chaired several thematic sessions at ECS meetings, as follows:<br>\n1.\t221st Meeting of the Electrochemical Society, held in Seattle, USA on 6-10 May 2012, in the session \u201cI4: Electrocatalysis Applied to Fuel Cells and Electrolyzers\u201d.<br>\n2.\t223rd Meeting of the Electrochemical Society, held in Toronto, Canada, on 12-16 May 2013, in the session \u201cI3: Ethanol oxidation\u201d.<br>\n3.\t224th Meeting of the Electrochemical society, held in San Francisco, USA, on 27 October-1 November 2013, in the sessions: \u201cB12: Stationary and Large Scale Electrical Energy Storage Systems 3\u201d.<br>\n4.\t225th Meeting of the Electrochemical society, held in Orlando, Florida, USA on 11-15 May 2014, in the session \u201cH8: Spectroelectrochemistry 2\u201d.<br>\n5.\t226th Meeting of the Electrochemical Society, held in Cancun, Mexico, on 5-10 October 2014, in the oral session \u201cA2: Batteries Beyond Lithium Ion\u201d; and in the poster session \u201cBatteries Beyond Li-ion Posters\u201d.<br>\n6.\t227th Meeting of the Electrochemical Society, held in Chicago, USA, on 24-28 May 2015, in the oral sessions \u201cB01: Carbon Nanostructures for Energy Conversion\u201d; \u201cB06: Graphene and Beyond: 2D Materials\u201d; \u201cL11: Structure and Relaxations in Soft Ion-Conducting Materials\u201d; and in the poster session \u201cStructure and Relaxations in Soft Ion-Conducting Materials\u201d.<br>\n7.\t228th Meeting of the Electrochemical Society, held in Phoenix, Arizona, USA, on 11-16 October 2015, in the oral sessions: \u201cA03: Batteries Beyond Lithium-Ion \u2013 Battery Division\/Energy Technology Division\u201d; \u201cA05: Electrolytes and Electrochemical Interfaces in Energy Storage Systems \u2013 Battery Division\/Energy Technology Division\u201d; \u201cA07: Intermetallic Anodes \u2013 Battery Division\u201d.<br>\n8.\t229th Meeting of the Electrochemical Society, held in San Diego, California, USA, on 29 May \u2013 3 June 2016, sessions: \u201cA02: Future and Present Advanced Lithium Batteries and Beyond \u2013 a Symposium in the Honor of Prof. Bruno Scrosati \u2013 Battery Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL06: Ionic Liquids as Electrolytes \u2013 Physical and Analytical Electrochemistry Division\u201d.<br>\n9.\t230th Meeting of the Electrochemical Society, held in Honolulu, Hawaii, USA, on 9-14 October 2016, session: \u201cA05: Beyond Li-ion Batteries \u2013 Battery Division\/Physical and Analytical Electrochemistry Division\/CSE Division\u201d.<br>\n10.\t231st Meeting of the Electrochemical Society, held in New Orleans, Louisiana, USA, on 28 May-2 June 2017, session: \u201cL02: Ion-Conducting Polymeric (or, Polymer-based) Materials \u2013 Physical and Analytical Electrochemistry Division\u201d.<br>\n11.\t232nd Meeting of the Electrochemical Society, held in National Harbor, MD, USA, on 1-5 October 2017, sessions: \u201cA03: Battery Student Slam 2 \u2013 Battery Division\u201d; \u201cI01D: Polymer Electrolyte Fuel Cells 17 (PEFC 17) \u2013 Catalyst Activity\/Durability for Hydrogen(-Reformate) Acidic Fuel Cells \u2013 Energy Technology Division\/Battery Division\/Industrial Electrochemistry and Electrochemical Engineering Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cI01E: Polymer Electrolyte Fuel Cells 17 (PEFC 17) \u2013 Materials for Alkaline Fuel Cells and Direct-Fuel Fuel Cells \u2013 Energy Technology Division\/Battery Division\/Industrial Electrochemistry and Electrochemical Engineering Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL01: Physical and Analytical Electrochemistry General Session \u2013 Physical and Analytical Electrochemistry Division\u201d; \u201cL03: Physical and Analytical Electrochemistry of Ionic Liquids 6 \u2013 Physical and Analytical Electrochemistry \/ Energy Technology \/ Organic and Biological Electrochemistry\u201d.<br>\n12.\t233rd Meeting of the Electrochemical Society, held in Seattle, WA, USA, on 13-17 May 2018, sessions: \u201cL04: Charge Transfer: Electrons, Protons and Other ions 3 \u2013 Electrons 2 \u2013 Li and other ions 3 \u2013 Physical and Analytical Electrochemistry Division \/ Energy Technology Division\u201d; \u201cL05: Oxygen Reduction Reactions  \u2013 1, 2, 12 \u2013 Physical and Analytical Electrochemistry Division \/ Energy Technology Division\u201d; \u201cI04: Materials for low temperature electrochemical systems 4 \u2013 Proton Exchange Membrane \u2013  Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering Division\/Physical and Analytical Electrochemistry Division\u201d.<br>\n13.\tAiMES 2018, held in Cancun, Mexico, from 30 September to 4 october 2018, session: \u201cA02: Challenges in Novel Electrolytes, Organic Materials and Innovative Chemistries for Batteries \u2013 In Honor of Michel Armand \u2013 Battery Division\u201d.<br>\n14.\t235th Meeting of the Electrochemical Society, held in Dallas, TX, USA on 26-30 May 2019, sessions: \u201cB07: Light Energy Conversion with Metal Halide Perovskites, Semiconductor Nanostructures, and Inorganic\/Organic Hybrid Materials \u2013 Nanocarbons Division, Physical and Analytical Electrochemistry Division\u201d; \u201cI05: Heterogeneous Functional Materials for Energy Conversion and Storage 2 \u2013 High-Temperature Energy, Materials, &amp; Processes Division, Battery Division, Energy Technology Division, Physical and Analytical Electrochemistry Division\u201d; \u201cL01: Physical and Analytical Electrochemistry, Electrocatalysis, and Photoelectrochemistry General Session and Grahame Award Symposium \u2013 Physical and Analytical Electrochemistry Division\u201d; \u201cL04: Polyoxometallates and Nanostructured Metal Oxides in Efficient Electrocatalysis, Energy Conversion, and Charge Storage \u2013 Physical and Analytical Electrochemistry Division, Energy Technology Division\u201d.<br>\n15.\t236th Meeting of the Electrochemical Society, held in Atlanta, Georgia, on 13-17 October 2019, sessions: \u201cA07 \u2013 Solid State Batteries \u2013 Battery Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cB01 \u2013 Carbon Nanostructures: From Fundamental Studies to Applications and Devices \u2013 Nanocarbons Division\/ Physical and Analytical Electrochemistry Division\u201d.<br>\n16.\tPRIME 2020, held in Honolulu, Hawaii, on 4-9 October 2020, session \u201cF02 \u2013 Advances in Application and Theory of Electrochemical Impedance Spectroscopy \u2013 Industrial Electrochemistry and Electrochemical Engineering Division\/Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d.<br>\n17.\t239th Meeting of the Electrochemical Society, held in Chicago, USA, on 30 May \u2013 3 June 2021, session \u201cL06 \u2013 Nanostructured Functional Materials for Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n18.\t240th Meeting of the Electrochemical Society, 10-14 October 2021, Digital Meeting, sessions \u201cA02 \u2013 Sodium and Lithium Intercalation Chemistry For Rechargeable Batteries \u2013 Special Symposium in Honor of Claude Delmas \u2013 Battery Division\u201d; \u201cL06 \u2013 Nitrogen Reduction \u2013 Physical and Analytical Electrochemistr Division\/Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering Division\u201d.<br>\n19.\t241st Meeting of the Electrochemical Society, 29 May \u2013 2 June 2022, sessions \u201cI06 \u2013 Heterogeneous Functional Materials for Energy Conversion and Storage 3 \u2013 High-Temperature Energy, Materials, and Processes Division\/Battery Division\/Energy Technology Division\/Physical and Analytical Electrochemistry Division\u201d; \u201cL04 \u2013 Redox Flow Systems for Energy Storage: New Chemical Systems and Mechanisms of Operation \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d; \u201cL05 \u2013 Mechanistic Understanding of Electrocatalytic Electrodics of Oxygen, Hydrogen, and Carbon Dioxide Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n20.\t243rd Meeting of the Electrochemical Society, 28 May \u2013 2 June 2023, sessions \u201cA06 \u2013 Inorganic Solid Electrolytes 1- Battery Division\u201d; \u201cL07 \u2013 Applications of Systems Operating Under Extreme Conditions, Development and Diagnosis of Systems for Electrochemical Charge Storage, New Approaches in Electrocatalysis and Materials Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering\u201d.<br>\n21.\t244th Meeting of the Electrochemical Society, 8-12 October 2023, session \u201cL07 \u2013 Nanoscale Electrochemistry \u2013 Physical and Analytical Electrochemistry Division\/Energy Technology Division\u201d.<br>\n22.\t245th Meeting of the Electrochemical Society, 26-30 May 2024, session \u201cL05 \u2013 Electrochemistry at the Nanoscale 2 \u2013 Physical and Analytical Electrochemistry Division\/Electrodeposition Division\/Energy Technology Division\u201d.<br>\n23.\tPRIME 2024, Honolulu, USA, 6-11 October 2024, sessions \u201cI01B \u2013 01 Alkaline Oxygen Evolution Reaction Catalysis 1 \u2013 Energy Technology Division\/Battery Division\/Corrosion Division\/Industrial Electrochemistry and Electrochemical Engineering Division\/Physical and Analytical Electrochemistry Division\u201d; and \u201cL02 \u2013 Molten Salts &amp; Ionic Liquids 24 in Memory of Yasuhiko Ito \u2013 Physical and Analytical Electrochemistry Division\/Electrodeposition Division\/Energy Technology Division\/Industrial Electrochemistry and Electrochemical Engineering Division\u201d.\n<br><br>\nProf. Vito Di Noto is also an active member of the American Chemical Society (ACS), of the International Society of Electrochemistry (ISE), of \u201cSociet\u00e0 Chimica Italiana \u2013 Divisione di elettrochimica\u201d (Italian Chemical Society \u2013Electrochemistry Division) and of \u201cAssociazione Italiana Chimica per Ingegneria\u201d (Italian Association of Chemistry for Engineering). He is one of the founders of the Interdivisional Group of \u201cChemistry for the Storage and the Conversion of Electrochemical Energy \u2013 Acee\u201d of the Italian Chemical Society. In 2020-2022 Prof. Di Noto was the President of the Electrochemistry Division of the Italian Chemical Society. Prof. Di Noto is an associated member of the \u201cConsiglio Nazionale delle Ricerche \u2013 Istituto per l\u2019Energia e le Interfasi \u2013 IENI\u201d (National Research Council \u2013 Institute for Energy and Interphases). He also belongs to the \u201cItalian group for electrochemical energy storage \u2013 GISEL\u201d.\n<br><br>\nProf. Di Noto was the Conference Chairman of:<br>\n1.\t12th International Symposium on Polymer Electrolytes (ISPE-12), which was held in Padova between 29 August and 3 September 2010 (250+ participants);<br>\n2.\tInternational meeting \u201c7th GIJME\u201d (7th German-Italian-Japanese Meeting of Electrochemists) held in Padova from 14 to 16 June 2014 (100+ participants);<br>\n3.\tInternational meeting \u201c21st International Conference on Solid State Ionics \u2013 SSI-21\u201d held in Padova from 18 to 23 June 2017 (1400+ participants).<br>\n4.\tInternational meeting \u201cInternational Symposium on Beyond Li-Ion Batteries 2024 \u2013 BeLI24\u201d, held in Padova between 1 and 6 September 2024 (300 participants).\n<br><br>\nProf. Di Noto co-organized:<br>\n1.\t13th International Symposium on Polymer Electrolytes (ISPE-13), which was held in Selfoss, Iceland on 26-31 August 2012;<br>\n2.\t2014 MRS Spring Meeting &amp; Exhibit, held in San Francisco, California (USA), on 21-25 April 2014, session \u201cM \u2013 Fuel Cells, Electrolyzers and other Electrochemical Energy Systems\u201d;<br>\n3.\t20th International conference on Solid State Ionics (SSI-20), held in Keystone (Colorado, USA) on 14-19 June 2015, session B: \u201cPolymer Electrolyte Fuel Cells &amp; Electrolyzers\u201d;<br>\n4.\tThe First International Symposium on Magnesium Batteries (Mag-Batt), held in Blautal\/Ulm, Germany, 21-22 July 2016 (as he is part of the Scientific Committee of the Meeting);<br>\n5.\t15th International Symposium on Polymer Electrolytes (ISPE-15), which was held in Uppsala, Sweden on 15-19 August 2016;<br>\n6.\tThe Second International Symposium on Magnesium Batteries (MagBatt II), held in Ulm, Germany, 27-28 September 2018 (as he is part of the Scientific Committee of the Meeting).<br>\n7.\tInternational Symposium on Electrocatalysis (Electrocat2018), held in Szczyrk, Poland from August 29th to September 1st 2018 as part of the International Steering and Advisory Board.<br>\n8.\tThe 69th Meeting of the International Society of Electrochemistry (69th ISE Meeting), held in Bologna, Italy from 2 to 7 September 2018 as the Lead Organizer of Symposium 7 \u201cElectrochemical Systems for Energy Conversion: Fuel Cells and Electrolyzers\u201d.<br>\n9.\tThe international conference \u201c6th International Conference on Ionic Liquids for Electrochemical Devices\u201d, held in Rome, Italy between 9th and 11th September 2018 as one of the Co-Chairs. URL: www.iled2018.it<br>\n10.\tThe 21st Italian Electrochemical Meeting \u201cGiornate dell\u2019Elettrochimica Italiana \u2013 GEI 2019\u201d, held in Padova, Italy between 8 and 12 September 2019. URL: http:\/\/www.chimica.unipd.it\/GEI2019\/<br>\n11.\tThe workshop \u201cPlatinum Group Metal-free Electrocatalysts: Structure-to-Property Relations, Materials Synthesis and Integration in Catalysts Layers\u201d, to be held in the Telluride Science Research Center, Colorado, USA, between 25 and 29 June 2019. URL: https:\/\/www.telluridescience.org\/meetings\/workshop-details?wid=782<br>\n12.\tThe \u201cFirst Italian Workshop on Energy Storage \u2013 (IWES 2021)\u201d, held between 24 and 26 February 2021, http:\/\/www.giselnetwork.it\/workshop-2021<br>\n13.\tThe workshop \u201cItalian Virtual Workshop on Fuel Cells 2021 \u2013 (IVWFC 2021)\u201d, held between 16 and 19 March 2021, https:\/\/ivwfc.mater.unimib.it\/<br>\n14.\tThe 27th Congress of the Italian Chemical Sciety \u2013 (SCI2021) held between 14 and 23 September 2021, http:\/\/www.sci2020.org\/ Specifically, he: (i) belonged to the Scientific Committee of the Congress; (ii) led the organization of the program of the Division of Electrochemistry; and (iii) co-organized the Satellite Event \u201cLa conversione e lo stoccaggio dell\u2019energia chimica in energia elettrica, nella vita odierna e nella societ\u00e0 futura \u2013 (The conversion and the storage of chemical energy into electrical energy, in today\u2019s life and in the future society)\u201d, http:\/\/www.sci2020.org\/index.php\/eventi-satellite<br>\n15.\t\u201cSSES \u2013 Summer School on Energy Storage\u201d, held in Padova, Italy between 17 July 2023 and 4 August 2023. URL: https:\/\/www.dii.unipd.it\/sses-summer-school-energy-storage<br>\n16.\tThe \u201cArea E \u2013 Energy and Transportation\u201d of the conference FEMS EUROMAT 2023, that took place between 3 and 7 September 2023 in Frankfurt, Germany, https:\/\/euromat2023.com\/areas\/e-energy-and-transportation<br>\n17.\t\u201c2023 Summer School of ElectroCatalysis\u201d, held in Trento, Italy between 10 and 15 September 2023. URL: http:\/\/elcats2023.unimi.it\/<br>\n18.\t\u201cGiornate dell\u2019Elettrochimica Italiana \u2013 GEI 2023\u201d, held in Cefal\u00f9, Italy between 17 and 21 September 2023. URL: https:\/\/gei2023.unipa.it\/<br>\n19.\tSummer School of \u201cEducational learning modules on Li-ion batteries\u201d an Education project funded by EIT Raw Materials. The school was held in Padova, Italy between 29 July and 2 August 2024. URL: https:\/\/elmo-lion.com\/summer-school\/\n<br><br>\nHe chaired the following thematic sessions in the symposia above:<br>\n1.\t2014 MRS Spring Meeting &amp; Exhibit, held in San Francisco, California (USA), on 21-25 April 2014, session \u201cM4 \u2013 AEM and PEM Membranes\u201d;<br>\n2.\t20th International conference on Solid State Ionics (SSI-20), held in Keystone (Colorado, USA) on 14-19 June 2015, session B: \u201cPolymer Electrolyte Fuel Cells &amp; Electrolyzers\u201d (both oral and poster).<br>\n3.\tThe 69th Meeting of the International Society of Electrochemistry (69th ISE Meeting), held in Bologna, Italy from 2 to 7 September 2018 in Symposium 7 \u201cElectrochemical Systems for Energy Conversion: Fuel Cells and Electrolyzers\u201d.<br>\n4.\tSymposium \u201cE04 \u2013 Redox Flow Batteries\u201d, of the FEMS EUROMAT 2023 conference, that takes place between 3 and 7 September 2023 in Frankfurt, Germany, https:\/\/euromat2023.com\/areas\/e-energy-and-transportation#session-1d2c72b9-3db2-4849-acac-bb3133583a4f<br>\n5.\tSymposium \u201cE06 \u2013 Beyond Lithium Batteries\u201d, of the FEMS EUROMAT 2023 conference, that takes place between 3 and 7 September 2023 in Frankfurt, Germany, https:\/\/euromat2023.com\/areas\/e-energy-and-transportation#session-1d2c72b9-3db2-4849-acac-bb3133583a4f<br>\n6.\tSymposium \u201cE07 \u2013 Materials for Ion Exchange Membrane Fuel Cells and Electrolyzers\u201d, of the FEMS EUROMAT 2023 conference, that takes place between 3 and 7 September 2023 in Frankfurt, Germany, https:\/\/euromat2023.com\/areas\/e-energy-and-transportation#session-1d2c72b9-3db2-4849-acac-bb3133583a4f\n<br><br><i>\nAWARDS<\/i><br>\n1.\tProf. Vito Di Noto was awarded the \u201cPremio Alceste Mion 2000\u201d for the chemical research in the field of polymer electrolytes by the University of Padova, in 2000;<br>\n2.\tIn occasion of the bicentenary of Volta\u2019s discovery, Prof. Vito Di Noto was awarded the \u201cPremio Focus 2000 Speciale\u201d by the Italian scientific center \u201cAlessandro Volta\u201d for the development of magnesium batteries (9 May 2000);<br>\n3.\tHe was awarded a fellowship by the Japan Society for the Promotion of Science (JSPS) in the framework of the program \u201cFY2001 JSPS Invitation Fellowship Program for Research in Japan (Short-term)\u201d to carry out activity as a visiting professor at the Tokyo University of Science in Japan in 2002;<br>\n4.\t \u201cBest Oral Presentation\u201d, awarded to the following contribution:<br>\nV. Di Noto, M. Vittadello, J.R.P. Jayakody, A.N. Khalfan, S.G. Greenbaum.<br>\nTwo new siloxanic proton conducting membranes. Part II: Proton conductivity mechanism and NMR study (Oral presentation).<br>\n9th International Symposium on Polymer Electrolytes, Mragowo, Poland, 22nd \u2013 27th August 2004.<br>\n5.\t\u201cBest Poster Presentation\u201d, awarded to the following contribution:<br>\nS. Lavina, M. Piga, E. Negro, V. Di Noto.<br>\nBroadband dielectric spectroscopy: a tool to study the effects of nanofillers in hybrid membranes for application in PEMFCs (Poster).<br>\nE-MRS 2009 Spring Meeting, Strasbourg, France, 8th \u2013 12th June 2009 (Poster).<br>\n6.\t\u201cThe PCCP best poster award\u201d, won by the following contribution:<br>\nA. Nale, E. Negro, Y. Herve Bang, K. Vezz\u00f9, F. Bertasi, C. Sun, G. Nawn, G. Pagot, G. Pace, S. Polizzi, V. Di Noto.<br>\nHierarchical graphene-supported PtNix, AuNix and FeSnx \u201ccore-shell\u201d carbon nitride electrocatalysts for the oxygen reduction reaction (Poster).<br>\n21st International Conference on Solid State Ionics, Padova, Italy, 18th \u2013 23rd June 2017.<br>\n7.\t23 June 2017. He received a \u201cCertificate of Appreciation\u201d from the President of the International Society for Solid State Ionics, Prof. Han-Ill Yoo \u201cfor excellence in organizing the 21st International Conference on Solid State Ionics in Padova, Italy between 18th and 23rd June 2017.\u201d<br>\n8.\tSeptember 2017 \u2013 February 2018. He was honored with the assignment of the \u201cC\u00e1tedra de Excelencia uc3m-Santander\u201d (Chair of Excellence uc3m-Santander) in the University \u201cCarlos III\u201d of Madrid, Spain.<br>\n9.\t12 February 2018. He received the prize \u201cPREMIO \u201cAMMINISTRAZIONE, CITTADINI, IMPRESE\u201d 2018\u201d (Prize for Public Administration, Citizens, Enterprises 2018, see http:\/\/www.italiadecide.it\/ricerca\/80-premio_amministrazione_cittadini_imprese_2018 ), for applied\/demonstration research with the following motivation: \u201cper le sue attivit\u00e0 nell\u2019ambito dello sviluppo di materiali funzionali avanzati e architetture innovative per dispositivi di conversione e di stoccaggio elettrochimico dell\u2019energia\u201d (for his activities in the field of the development of advanced functional materials and innovative architectures for electrochemical energy conversion and storage devices). The prize was bestowed by the association ITALIADECIDE ( http:\/\/www.italiadecide.it\/ ). The prize was delivered in Montecitorio (the Italian House of the Representatives) by Federica Mogherini (the High Representative of the European Union for Foreign Affairs and Security Policy) at the presence of the President of Italy, Sergio Mattarella, and the President of the Chamber of Deputies, Laura Boldrini. See http:\/\/webtv.camera.it\/archivio?id=12511&amp;position=0<br>\n10.\t28 May 2019. He received a \u201cCertificate of Recognition\u201d from Prof. Wilson K. S. Chiu, the Lead Organizer of Symposium I05. The award is issued \u201cin grateful appreciation of the contribution as a keynote speaker during 235th ECS meeting in Dallas, Texas held from May 26-30, 2019. The presentation of \u2018Interplay between Properties, Electrical Response and Conductivity Mechanism in Hybrid Inorganic-Organic Ion-Exchange Membranes for Electrochemical Application\u2019 added great value to the technical content of Symposium I05 Heterogeneous Functional Materials for Energy Conversion and Storage 2.\u201d<br>\n11.\tHe has been inducted to hold the title of \u201cFellow of the Electrochemical Society\u201d during the 235th Meeting of the Electrochemical Society that was held in Dallas, TX, on 26-30 May 2019. He was officially bestowed this Award during the 236th Meeting of the Electrochemical Society in Atlanta, GA, on 13-17 October 2019.<br>\n12.\tHe was assigned the \u201cC\u00e1tedra de Excelencia uc3m-Santander\u201d (Chair of Excellence uc3m-Santander) in the University \u201cCarlos III\u201d of Madrid, Spain. Prof. Di Noto will hold this position for three months during 2020.<br>\n13.\tHe received the \u201cETD Award\u201d for the year 2022 bestowed by the Energy Technology Division of the Electrochemical Society. He is receiving the Award during the 241st ECS Meeting in Vancouver, Canada from 29 May to 2 June 2022. The citation for the Award is: \u201cFor the development of innovative families of functional materials for application to both electrode configurations and electrolyte separators implemented in low-temperature fuel cells, covering breakthrough preparation procedures, the elucidation of crucial aspects of the various operation mechanisms and integration in prototype devices tested in operating conditions.\u201d<br>\n14.\tOn 26 November 2024 he received the \u201cItalian Knowledge Leaders Award \u2013 IV edition\u201d, for his efforts to bring congresses of global importance to Italy, strengthening it as a leading destination for conferences. https:\/\/conventionbureauitalia.com\/news\/turismo-congressuale-si-premiano-in-campidoglio-le-eccellenze-italiane-della-cono\n<br><br><i>\nCOMMISSIONS OF TRUST<\/i><br>\n1.\tFrom September 2014 to September 2016 he was Member of the ETD Srinivasan Award Review Subcommittee, within the framework of the Electrochemical Society.<br>\n2.\tIn 201s he was in the Committee evaluating the Regional Research Projects of Regione Veneto<br>\n3.\tFrom September 2014 to September 2016 he was Member of the ETD Graduate Student Award Review Subcommittee, within the framework of the Electrochemical Society.<br>\n4.\tFrom September 2016 to September 2017 he was Chair of the ETD Srinivssan Award Review Subcommittee, within the framework of the Electrochemical Society.<br>\n5.\tFrom September 2016 to September 2017 he was Chair of the ETD Graduate Student Award Review Subcommittee, within the framework of the Electrochemical Society.<br>\n6.\tSince 22 November 2017 to 10 June 2021 he was Vice-Coordinator of SubProgramme 1 \u2013 \u201cElectrolytes\u201d of the \u201cJoint Research Programme on Fuel Cells and Hydrogen technologies (FCs&amp;H2)\u201d of the \u201cEuropean Energy Research Alliance (EERA)\u201d.<br>\n7.\tSince 11 June 2021 he is the Coordinator of SubProgramme 1 \u2013 \u201cElectrolytes\u201d of the \u201cJoint Research Programme on Fuel Cells and Hydrogen technologies (FCs&amp;H2)\u201d of the \u201cEuropean Energy Research Alliance (EERA)\u201d.<br>\n8.\tSince 11 May 2022 he is the Vice-Coordinator of the of the \u201cJoint Research Programme on Fuel Cells and Hydrogen technologies (FCs&amp;H2)\u201d of the \u201cEuropean Energy Research Alliance (EERA)\u201d.<br>\n9.\tSince November 2020 he belongs to the \u201cJoint Programme on Energy Storage\u201d of the \u201cEuropean Energy Research Alliance (EERA)\u201d.<br>\n10.\tProf. Di Noto was the Treasurer of the International Society of Solid State Ionics (ISSI) in the years 2018-2019.<br>\n11.\tSince 2020 Prof. Vito Di Noto belongs to the Working Group 1 \u2013 \u201cNew and emerging battery technologies\u201d and to the Working Group 3 \u2013 \u201cAdvanced materials\u201d of Batteries Europe.<br>\n12.\tProf. Di Noto was one of the two Chairpersons of the ISPE Meetings for the years 2018-2021.<br>\n13.\tProf. Di Noto belongs to the Scientific Committee of the European Fuel Cells and Hydrogen Piero Lunghi Conference \u2013 EFC21, which will be virtually held on December 15-17, 2021.<br>\n14.\tSince June 2021 Prof. Di Noto represents UNIPD at Batteries Europe Partnership Association (BEPA), and belongs to the Technical Working Groups of BEPA, as follows: (i) WG1 \u2013 New and Emerging Technologies; (ii) WG2 \u2013 Raw materials and Recycling; (iii) WG3 \u2013 Advanced Materials; (iv) WG5 \u2013 Mobility Applications and Integration; (v) WG6 \u2013 Stationary Applications and Integration<br>\n15.\tProf. Di Noto belongs to the \u201cStrategic Technical Committee\u201d (Comitato Tecnico Strategico) constituted by Veneto Sviluppo S.p.A. and Regione Veneto in compliance with the DGR n. 526 of 27 April 2021. The purpose of this Committee is to analyze the economic phenomena of the Venetian Region to define strategic guidelines in the post-COVID recovery timeframe. This will allow to devise plans to maximize the impact of the funds obtained through the Next Generation EU (Recovery Plan). The Committee will be tasked to carry out studies and planning to provide the Venetian Regional Government with evaluation and strategic guidelines in a medium- and long-term time framework.<br>\n16.\tSince July 2021 he was Member of the ETD Srinivasan Award Review Subcommittee, within the framework of the Electrochemical Society.<br>\n17.\tSince 2022 Prof. Di Noto represents UNIPD at Hydrogen Europe Research (HER).\n<br><br><i>\nINVITATIONS TO THEMATIC WORKSHOPS<\/i><br>\n1.\tV. Di Noto, M. Fauri. \u201cRecenti sviluppi nel campo delle batterie al Magnesio\u201d. Invited seminar at the ENI Research Center, S. Donato Milanese, Milan, Italy, 21 December 1999;<br>\n2.\tV. Di Noto, \u201cStructure, properties and proton conductivity of Nafion\/[(TiO2)(WO3)0.148]YTiO2 nanocomposite membranes\u201d. 2nd TUS-International Collaboration Workshop, Tokyo, Japan, 10-11 December 2008;<br>\n3.\tV. Di Noto, \u201cHybrid inorganic-organic proton-conducting membranes based on Nafion and oxocluster nanofillers: structural features, relaxations and conductivity\u201d. 4th TUS-International Collaboration Workshop, Tokyo, Japan, 8-10 December 2009;<br>\n4.\tV. Di Noto, \u201cDevelopment of Plurimetallic Nano-electrocatalysts based on Carbon Nitride Supports for the ORR Processes in PEM Fuel Cells\u201d. 5th Japanese-Italian-German Meeting, Sendai, Japan, 24-26 October 2010;<br>\n5.\tV. Di Noto, E. Negro, \u201cNano-electrocatalysts based on Carbon Nitride Supports for the ORR and FOR in PEM Fuel Cells.\u201d 4th Santa Fe Workshop on Materials for Energy Conversion: Catalysts for Ethanol Oxidation end Electro-oxidation. Santa Fe, USA, 4-6 November 2010 (invited by. Prof. P. Atanassov);<br>\n6.\tV. Di Noto, \u201cHybrid inorganic-organic polymer electrolytes: synthesis, structure and conductivity\u201d. Colorado School of Mines, Golden, CO, 2 September 2011 (invited by Prof. A. Herring);<br>\n7.\tV. Di Noto, \u201cInterplay between nanostructure and proton conductivity of Nafion-based nanocomposite membrane\u201d. Max Planck Institute for Solid-State research of Stuttgart, Germany, 20 January 2012 (invited by Prof. J. Maier);<br>\n8.\t V. Di Noto, \u201cHybrid inorganic-organic polymer electrolytes: synthesis, structure and conductivity\u201d. Fraunhofer-Institut f\u00fcr Silicatforschung ISC di Wuerzburg, Germany, 29 February 2012, (invited by Prof. M. Popall);<br>\n9.\tV. Di Noto, \u201cInterplay between nanostructure and proton conductivity of Nafion-based nanocomposite membranes\u201d. Forschungszentrum Juelich, Germania, 2 March 2012 (invited by Prof. D. Stolten and W. Lehnert);<br>\n10.\tV. Di Noto, \u201cPlurimetallic Nano-electrocatalysts based on Carbon Nitride Supports for the ORR Processes in PEM Fuel Cells\u201d. 6th Japanese-Italian-German Meeting, Neu-Ulm, University of Ulm, Germany, 4-7 July 2012;<br>\n11.\tV. Di Noto, \u201cBroadband electric spectroscopy: a powerful tool for the determination of charge transfer mechanisms in ion conductors\u201d. Symposium on Ionic Materials, 14-15 March 2013, JAIST, Ishikawa, Japan (invited by prof. N. Matsumi);<br>\n12.\tV. Di Noto, \u201cHybrid inorganic-organic proton conducting membranes for PEMFCs: synthesis, properties and relaxations\u201d. Department of Chemical and Biomolecular Engineering, University of Tennessee, Knoxville, Tennessee (USA), 22 October 2013 (invited by Prof. S. Paddison);<br>\n13.\tV. Di Noto, \u201cBroadband electric spectroscopy: a powerful tool for the determination of charge transfer mechanisms in ion conductors\u201d. National Laboratory, Oak Ridge, Tennessee (USA), 23 October 2013 (invited by Prof. A. Sokolov);<br>\n14.\tV. Di Noto, \u201cPlurimetallic alloys bonded in carbon nitride \u201cshells\u201d supported on \u201ccores\u201d of conducting nanoparticles as electrocatalysts for the oxygen reduction reaction (ORR)\u201d. Department of Chemical and Nuclear Engineering, University of New Mexico, Albuquerque, New Mexico (USA), 6 November 2013 (invited by Prof. P. Atanassov);<br>\n15.\tV. Di Noto, \u201cCharge transfer mechanisms in Anionic Membranes by Broadband Electric Spectroscopy\u201d. 7th Bishop Lodge Workshop: Materials for Energy Conversion (Alkaline Membrane Fuel cell), University of New Mexico, Santa Fe (USA), 3-5 November 2013 (invited by prof. P. Atanassov);<br>\n16.\tV. Di Noto, \u201cAn innovative family of electrocatalysts for the oxygen reduction reaction (ORR): plurimetallic alloy nanoparticles embedded in carbon nitride \u201cshells\u201d supported on conducting nanostructured \u201ccores\u201d \u201c, Department of Chemistry and Chemical Biology, Northeastern University, Boston (USA), 16 May 2014 (invited by prof. S. Mukerjee);<br>\n17.\tV. Di Noto, \u201cGRAFUS \u2013 Graphene and related materials as supports for innovative metal carbon nitride electrocatalysts for anion exchange membrane fuel cells\u201d Graphene Flagship: WP9 Progress meeting, Dresden (Germania), 22 October 2014;<br>\n18.\tV. Di Noto, \u201cHybrid Electrolytes for secondary Li and Mg batteries\u201d, Workshop on interfaces in batteries, Helmholtz Institute Ulm, Karlsruhe Institute of Technology (Germany), 20-21 November 2014 (invited by prof. S. Passerini);<br>\n19.\tV. Di Noto , \u201cNext-Generation Ion-Exchange Membrane Fuel Cells with Graphene-Based Electrocatalysts\u201d, Graphene Study 2016, Les Houches (France), 17-22 January 2016 (invited by Dr. F. Bonaccorso);<br>\n20.\tV. Di Noto, F. Bertasi, K. Vezz\u00f9, E. Negro, G. Pagot, \u201cIonic Liquid -Based Electrolytes for Secondary Mg\u201d, 2nd Graz Magnesium Battery, Graz, Austria, 27 \u2013 28 September 2016 (invited by Prof. J. Garche);<br>\n21.\tV. Di Noto, \u201cTransport Phenomena in Polymers and Hybrid Materials\u201d, EPF 8th Summer School \u2013 XXXVIII Convegno-Scuola \u201cMario Farina\u201d, Gargnano, Brescia (Italy), 14-19 May 2017. (invited by Prof. Jean-Fran\u00e7ois Gerard).<br>\n22.\tV. Di Noto, \u201cAdvanced High-Performing Nanostructured Materials for Polymer Electrolyte Membrane Fuel Cells\u201d Israel-Italy Scientific Workshop in Nano-Materials &amp; Nano Technologies in Clean-Tech Applications, Tel Aviv (Israel), 15 March 2018. Invited by the Israeli Ministry of Science and Technology (MOST), the Italian Ministry of Foreign Affairs, the Embassy of Italy and the Italy-Israel Chamber of Commerce and Industry in Israel; the workshop was delivered at the presence of Mr. Perez Vazan, Director General, Ministry of Science and Technology of Israel, and  H.E. Gianluigi Benedetti, Ambassador of Italy in Israel.<br>\n23.\tV. Di Noto, \u201c\u2018Closed\u2019 and \u2018Open\u2019 systems in the field of electrochemical conversion and storage of energy\u201d, the 1st Italian-Korean Bilateral Workshop on Electrochemical Energy Storage (ItaKa), University of Milano-Bicocca, Milan, Italy, 25-26 October 2018 (invited by Prof. Riccardo Ruffo, University of Milano-Bicocca).<br>\n24.\tV. Di Noto, \u201cInterplay between Physicochemical Features and Electrochemical Performance in the ORR of \u2018Platinum-Free\u2019 Electrocatalysts Based on Hierarchical Graphene Supports\u201d, talk delivered at the 3rd meeting of the Israel Fuel Cell Consortium, satellite workshop to the 6th International Smart Mobility Summit, 29-30 October 2018 (invited by Prof. David Zitoun, Bar-Ilan University).<br>\n25.\tV. Di Noto, \u201cGraphene as key component in Electrocatalysts for Next-Generation Ion-Exchange Membrane Fuel Cells\u201d, talk delivered at the EPSRC Centre for Doctoral Training in Graphene Technology, Cambridge, UK, 3 May 2019 (Invited by Prof. Andrea Ferrari, University of Cambridge).<br>\n26.\tV. Di Noto, \u201cRecent Advances in Lithium-Air Batteries\u201d, talk delivered at the International Spring School of Electrochemistry, Castellammare del Golfo (TP), Italy, between 19 and 23 May 2019.<br>\n27.\tV. Di Noto, \u201cPEM Fuel Cells \u2013 Focus on Electrocatalysts\u201d, lecture delivered at the International Summer School Hydrogen Nancy, France, between 5 and 8 July 2021.<br>\n28.\tV. Di Noto, \u201cThe Pathway from Renewable Power to \u201cGreen Hydrogen\u201d \u2013 Technologies for Water Electrolysis\u201d, online seminar delivered on 26 January 2022 in the framework of a series of webinars on hydrogen and related technologies offered by The Electrochemical Society.<br>\n29.\tV. Di Noto, \u201cThe role of hydrogen in a clean energy system \u2013 production, distribution and implementation\u201d, lecture delivered at the Avogadro Colloquia, Rome, 15-16 December 2022.<br>\n30.\tV. Di Noto, talk in the Symposium \u201cIdrogeno, un ponte verso un futuro sostenibile\u201d, Galileo, Festival della scienza ed innovazione, Padova, 20 May 2023.<br>\n31.\tV. Di Noto, \u201cCharge Transfer Mechanisms in Ion-Conducting Materials\u201d, lecture delivered at the Special Meeting of the Boston New England ECS Section (NESECS), chaired by Prof. Sanjeev Mukerjee, 31 May 2023. The lecture is delivered in the framework of NSF IUCRC \u201cCenter on Solid-state Electric Power Storage (CEPS)\u201d, URL: https:\/\/greenCEPS.com<br>\n32.\tV. Di Noto, \u201cAdvanced functional materials as key enablers for the hydrogen economy\u201d, contribution presented at the \u201cEIT RawMaterials Expert Forum \u2013 Photovoltaic and hydrogen materials driving the net-zero transition\u201d, 21 September 2023, Madrid, Spain. URL: https:\/\/eitrawmaterials.eu\/expert-forum-madrid\/<br>\n33.\tV. Di Noto, \u201cIl ruolo dell\u2019H2 in un sistema energetico pulito \u2013 Produzione, distribuzione ed Implementazione\u201d, contribution presented at the Roundtable: \u201cLa Filiera dell\u2019Idrogeno in Veneto: stato dell\u2019arte e prospettive di sviluppo\u201d, 13 October 2023, Venice, Italy. URL: https:\/\/vsf.foundation\/biennale-della-sostenibilita-futuro-piu-green-grazie-allidrogeno-venezia-possibile-hub\/<br>\n34.\tV. Di Noto \u201cProduction, distribution and applications of H2 in a clean energy system\u201d, contribution presented at the EERA JP e3s Conference \u201cFostering changes in energy consumption: a pathway to demand reduction\u201d. 26 October 2023, Padova, Italy.<br>\n35.\tV. Di Noto, participation as Panelist in the workshop: \u201cEuorpean clean steel: stand up together for a future low emission industry\u201d, 25 January 2024, Venice, Italy. URL: https:\/\/rea.ec.europa.eu\/events\/european-clean-steel-stand-together-future-low-emission-industry-hydrogen-powerful-ally-2024-01-25_en<br>\n36.\tV. Di Noto, participation to the workshop: \u201cHydrogen\u2019s Role from basic research to industry\u201d, 13 June 2024, Milan, Italy. Prof. Di Noto presented a contribution outlining the Italian Academic initiatives. URL: https:\/\/www.mater.unimib.it\/en\/events\/hydrogens-role-academy-industry<br>\n37.\tV. Di Noto, participation to the workshop entitled: \u201cE-Fuels\u201d, organized by \u201cAccademia dei Lincei\u201d, 3-4 October 2024, Rome, Italy. Prof. Di Noto presented a contribution entitled: \u201cWhy is Green H2 the Solution for Energy transition?\u201d. URL: https:\/\/www.lincei.it\/it\/manifestazioni\/combustibili-di-sintesi\n<br><br><i>MEMBER OF THE COMMISSION FOR THE ITALIAN NATIONAL SCIENTIFIC HABILITATION<\/i><br>\nFrom 2017 to 2019, Prof. Vito Di Noto is one of the five members of the Commission awarding the Italian National Scientific Habilitation (\u201cAbilitazione Scientifica Nazionale) to both Associate Professors and Full Professors in the \u201cSettore Concorsuale 03\/B2 \u2013 Fondamenti Chimici delle Tecnologie\u201d (Competition Area 03\/B2 \u2013 Chemical basis of technology applications).\n<br><br><i>\nMEMORANDA OF UNDERSTANDING<\/i><br>\nSince 2008 Prof. Vito Di Noto promoted the establishment of several Memoranda of Understanding between the University of Padova and other major academic and research institutions, including: Fraunhofer ISC, Juelich Research Centre, The University of Tennessee, Knoxville, Tokyo University of Agriculture and Technology, and Yokohama National University.\n<br><br><i>\nMEMBER OF THE COMMISSION FOR THE ENROLLMENT OF PERMANENT STAFF IN NATIONAL OR INTERNATIONAL INSTITUTIONS<\/i><br>\n1. Procedure for the enrollment of a tenured Assistant Professor in the Academic Discipline CHIM\/03, (General and Inorganic Chemistry) at the Department of Chemistry \u201cGiacomo Ciamician\u201d of the University of Bologna, Italy, August 2008;<br>\n2. Competition to bestow the Habilitation to become Assistant Professor at the University of Montpellier, France, September 2015;<br>\n3. Procedure for the enrollment of a full-time Full Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Rome \u201cLa Sapienza\u201d, Italy, 2016;<br>\n4. Procedure for the enrollment of a full-time Type-B Assistant Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the Polytechnic University of Turin, Italy, 2016;<br>\n5. Procedure for the enrollment of a full-time Type-B Assistant Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Brescia, Italy, 2016;<br>\n6. Procedure for the enrollment of a full-time Type-A Assistant Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Naples, Italy, 2016;<br>\n7. Procedure for the enrollment of a full-time Type-A Assistant Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the Polytechnic University of Turin, Italy, 2016;<br>\n8. Procedure for the enrollment of a full-time Type-B Assistant Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Padova, Italy, 2017.<br>\n9. Procedure for the enrollment of a full-time Full Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the Politecnico di Torino, Italy, 2018.<br>\n10. Procedure for the enrollment of a full-time Associate Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Rome \u201cLa Sapienza\u201d, Italy, 2018.<br>\n11. Procedure for the enrollment of a full-time Full Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Pisa, Italy, 2018.<br>\n12. Procedure for the enrollment of a full-time Type-A Assistant Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Rome \u201cLa Sapienza\u201d, Italy, 2020.<br>\n13. Procedure for the enrollment of a full-time Type-B Assistant Professor (LAW 240\/2010), in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the \u201cPolitecnico di Milano\u201d, Italy, 2020.<br>\n14. Procedure for the enrollment of a full-time Associate Professor (LAW 240\/2010) in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Palermo, Italy, 2021.<br>\n15. Procedure for the enrollment of a full-time Full Professor (LAW 240\/2010) in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Brescia, Italy, 2021.<br>\n16. Procedure for the enrollment of a full-time Type-A Assistant Professor (LAW 240\/2010) in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Naples, Italy, 2021.<br>\n17. Procedure for the enrollment of a full-time Type-A Assistant Professor (LAW 240\/2010) in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the Polytechnic of Turin, Italy, 2021.<br>\n18. Procedure for the enrollment of a full-time Type-B Assistant Professor (LAW 240\/2010) in the Academic Discipline CHIM\/07 (Chemical foundations of technologies) at the University of Rome \u201cTor Vergata\u201d Italy, 2022.\n<br><br><i>\nMEMBER OF THE COMMISSION FOR THE EVALUATION OF THE FINAL PhD DISSERTATION IN NATIONAL OR INTERNATIONAL INSTITUTIONS<\/i><br>\n1.\tTitle: \u201cProton conducting inorganic-organic matrices for fuel cells based on sulfonyl- and heterocyclic-functionalized polycondensates via sol-gel processing\u201d; candidate: Dr Stephane Jacob; institution: Institut National Polytechnique de Grenoble, France; supervisor: Christiane Poinsignon; date: 8 November 2004;<br>\n2.\tTitle: \u201cPolymer Electrolyte Conductivity and the Vogel Equation\u201d; candidate: Dr. Fred McKenna; institution: Department of Physics and Astronomy, University of Oklahoma, USA; supervisor: prof. John E. Moore Furneaux; date: 1 September 2004;<br>\n3.\tTitle: \u201cMise en forme par extrusion de polym\u00e8re fonctionnels conducteurs conducteur protoniques: polysulfones sulfones\/liquides ioniques. Application dans le domaine des piles \u00e0 combustible\u201d; candidate: Dr. Yannick Molmeret; institution: University of Grenoble, France; supervisor: prof. Nadia El Kissi; date: 29 April 2010;<br>\n4.\tTitle: \u201cCompr\u00e9hension par \u00e9tablissement de courbes d\u2019\u00e9talonnage de la structure des membranes perfluor\u00e9es sulfoniques pour pile \u00e0 combustible\u201d; candidate: Dr. Eddy Moukheiber; institution: University of Grenoble, France; supervisor: prof. Lionel Flandin; date: 5 July 2011;<br>\n5.\tMember of the Commission for the evaluation of the final exam of the Doctoral School in Chemistry of the University of Palermo, Italy, 14-15 November 2011;<br>\n6.\tTitle: \u201cElectrolytes for Magnesium-Air Batteries\u201d; candidate: Dr. Timothy Seng Kiat Khoo; institution: Monash University, Australia; supervisor: prof. Maria Forsyth, date: 2012;<br>\n7.\tTitle: \u201cNano-structured Polymer Electrolytes based on ionic Liquids for High-Temeprature PEMFCs\u201d; candidate: Dr. Rakhi Sood; institution: University of Grenoble, France; supervisor: Dr. Christina Iojoiu; date: 6 December 2012;<br>\n8.\tTitle: \u201cPhysical Properties and Interactions of Ionic Liquids and Ionic Liquid Li-salt Mixtures\u201d; candidate: Dr. Jagath Pitawala; institution: Chalmers University of Technology, Sweden; supervisors: prof. Aleksandar Matic and prof. Per Jacobsson; date: 23 November 2012;<br>\n9.\tTitle: \u201cEtude m\u00e9canistique de la r\u00e9action d\u2019oxydation de l\u2019\u00e9thanol sur \u00e9lectrocatalyseurs \u00e0 base de Pt, Rh, SnO2 sur support carbon\u00e9 en milieu acide\u201d; candidate: Dr. Antoine Bach Delpeuch; institution: Institute Polytechnique de Grenoble, France; supervisors: prof. Marian Chatenet and dr. Carsten Cremers; date: 24 November 2014;<br>\n10.\tTitle: \u00abReactivity of Perfluoropolyether Peroxides on Carbon Based Materials and their Application in Proton Exchange Membrane Fuel Cells\u201d; candidate: Dr. Massimo Gola; institution: Department of Chemistry Materials and Chemical Engineering \u201cGiulio Natta\u201d of the Polytechnic of Milan, Italy; supervisor: prof. Walter Navarrini; date: 17 December 2014.<br>\n11.\tTitle: \u00abNon-Equilibrium Synthesis of Nanocrystalline Transition Metal Chalcogenides Catalysts for Electrochemical Fuels Production\u201d; candidate: Dr. Giorgio Giuffredi; institution: Department of Chemistry Materials and Chemical Engineering \u201cGiulio Natta\u201d of the Polytechnic of Milan, Italy; supervisor: Dr. Fabio Di Fonzo; date: 20 October 2020.<br>\n12.\tTitle: \u00abStructure of Cathode-Electrolyte interfaces and correlation with ionic conductivity in solid oxide fuel cell devices\u201d; candidate: Dr. Alessandro Chiara; institution: Department of Physics and Chemistry, University of Palermo, Italy; supervisor: Prof. Antonino Martorana; date: December 2020.<br>\nTitle: \u201cImpact of degradation and aging on properties of PFSA membranes for fuel cells\u201d; candidate: Dr. Myl\u00e8ne Robert; institution: University of Lorraine, France; supervisors: Prof. Olivier Lottin and Dr. Jean-Christophe Perrin; date: 12 January 2020.<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div><div data-label=\"Supervision\" data-id=\"content--8\" data-export-id=\"content-12\" data-category=\"content\" class=\"content-12 content-section content-section-spacing\" id=\"supervision\"><div class=\"gridContainer\"> <div class=\"row text-center\"><div class=\"section-title-col\" data-type=\"column\"> <h2 class=\"\">Supervision<\/h2> <p class=\"lead\" style=\"text-align: justify\"><i>SUPERVISION OF DISSERTATIONS<\/i><br>\n1.\tSupervisor of several PhD Thesis of the School of Molecular Sciences, Materials Science and Chemical Engineering of University of Padova, Italy<br>\n2.\tSupervisor of numerous MS and BS thesis in Chemistry, Industrial Chemistry, Chemical Engineering, Electrical Engineering, Medicinal Chemistry and Technology at the University of Padova, Italy\n<br><br><i>\nSOME ALUMNI<\/i><br>\nPhD Students:<br>\nDavide Barreca (National Research Council, Italy); Michele Vittadello (Medgar Evers College, City University of New York), Maurizio Furlani (Chalmers University of Technology, Sweden), Maria Viviani, Mariella D\u2019Acunzi, Federico Bertasi (University of Padova), Nicola Boaretto, Matteo Piga, Silvia Gross (National Research Council, Italy), Chuanyu Sun, Gioele Pagot, Paolo Damioli, Afaaf Rahaat Alvi, Giovanni Crivellaro, Matteo Abruzzese and others.\n<br><br>\nPostdoctoral Scholars:<br>\nVanni Zago, Simone Biscazzo, Vera M\u00fcnchow (European Patent Office), Gwen Giffin (University of Oklahoma, USA), Savitha Thayumanasundaram (Bharathiar University, India), Malathi Jeyapandian (Bharathiar University, India), Enrico Negro (University of Padova, Italy), Keti Vezz\u00f9 (University of Padova, Italy), Federico Bertasi (University of Padova, Italy), Ricardo Gon\u00e7alves Carvalho (University of Aveiro, Portugal), Susana Solano Arana, Antoine Bach Delpeuch (Grenoble Polytechnic Instute, France), Graeme Nawn (University of Victoria, Canada), Angeloclaudio Nale (University of Milano-Bicocca, Italy), Chuanyu Sun (University of Padova, Italy), Gioele Pagot (University of Padova, Italy), Agnieszka Zlotorowicz (University of Warsaw, Poland), Bhushan Patil (India), Vikash Gajraj (Uttaranchal University, India), Pegah Roustazadeh Sheikhyousefi (Amirkabir University of Technology, Iran), Giovanna Paladin (University of Padova, Italy), Raul San Roman (University \u201cCharles III\u201d, Spain), Aldona Kostuch (University of Warsaw, Poland), Diana Orozco (University of Antioquia, Colombia), Federica Silvestri (University of Padova, Italy), Begum Yarar Kaplan (Sabanci University, Turkey), Stefano Rossetti (University of Ferrara, Italy) and others.<\/p><\/div> <\/div> <div class=\"row center-xs middle-xs\"> <div class=\"col-sm-9\" data-type=\"column\"> <\/div> <\/div><\/div> <\/div>","protected":false},"excerpt":{"rendered":"<p>Prof. Vito Di Noto, Ph.D. CURRICULUM VITAE ET STUDIORUM Prof. Vito Di Noto Present Positions: \u2013 Full Professor of Electrochemistry for Energy and Solid-State Chemistry in the Department of Industrial Engineering of the University of Padova, Italy. \u2013 Head of the Section of Chemistry for Technology in the same Department; founder and team leader of&hellip; <br \/> <a class=\"read-more\" href=\"https:\/\/research.dii.unipd.it\/chemamse\/vito-di-noto\/\">Leggi tutto<\/a><\/p>\n","protected":false},"author":99,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"pro\/page-templates\/full-width-page.php","meta":{"footnotes":""},"folder":[9],"class_list":["post-645","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v28.1 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Vito Di Noto - CHEMAMSE<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/research.dii.unipd.it\/chemamse\/vito-di-noto\/\" \/>\n<meta property=\"og:locale\" content=\"it_IT\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Vito Di Noto - CHEMAMSE\" \/>\n<meta property=\"og:description\" content=\"Prof. Vito Di Noto, Ph.D. CURRICULUM VITAE ET STUDIORUM Prof. Vito Di Noto Present Positions: \u2013 Full Professor of Electrochemistry for Energy and Solid-State Chemistry in the Department of Industrial Engineering of the University of Padova, Italy. \u2013 Head of the Section of Chemistry for Technology in the same Department; 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