{"id":213,"date":"2018-03-23T09:58:42","date_gmt":"2018-03-23T08:58:42","guid":{"rendered":"http:\/\/templategdr.dii.unipd.it\/?page_id=213"},"modified":"2021-06-01T12:29:38","modified_gmt":"2021-06-01T10:29:38","slug":"research","status":"publish","type":"page","link":"https:\/\/research.dii.unipd.it\/nanoeng\/research\/","title":{"rendered":"Research"},"content":{"rendered":"<h2 style=\"text-align: center\"><strong>CURRENT RESEARCH TOPICS<\/strong><\/h2>\n<h4 style=\"text-align: center\">GAS SENSOR FOR ENVIROMENTAL MONITORING<\/h4>\n<p><span style=\"color: #000000\"><strong><em>Collaborators: <\/em><\/strong>Prof. Paul Mulvaney (Melbourne University), Prof. Giovanni Mattei and Prof. Filippo Romanato (Unipd, DFA), Prof. Wojtek Wlodarski and Dr. Enrico Della Gaspera (RMIT University)<\/span><\/p>\n<p><span style=\"color: #000000\"><img loading=\"lazy\" decoding=\"async\" class=\" wp-image-1286 alignleft\" src=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2019\/11\/immagine-1-1.png\" alt=\"\" width=\"388\" height=\"147\" srcset=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2019\/11\/immagine-1-1.png 2115w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2019\/11\/immagine-1-1-300x114.png 300w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2019\/11\/immagine-1-1-768x291.png 768w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2019\/11\/immagine-1-1-1024x388.png 1024w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2019\/11\/immagine-1-1-1920x727.png 1920w\" sizes=\"auto, (max-width: 388px) 100vw, 388px\" \/>Surface plasmons (SPs) are coherent electron oscillations that exist at the interface between any two materials where the real part of the dielectric function changes sign across the interface (e.g. a metal-dielectric interface, such as a metal sheet and glass). SPR and LSPR are very sensitive to small local changes in charge density, refractive index, and chemical reaction at the interface with the surrounding medium, allowing the engineering of ultrasenstive and selective sensors. The NanoEnG group has the capability to engineer both the sensitive material and the plasmonic nanostructure and to characterize the optical gas sensing properties.<\/span><\/p>\n<p><span style=\"color: #000000\"><em><strong>References:<\/strong><\/em><\/span><br \/>\n<span style=\"color: #000000\">&#8211; M. Sturaro et al., ACS APPL. MAT. INTER. (2016)<\/span><br \/>\n<span style=\"color: #000000\">&#8211; S. S. Collins et al., ACS NANO (2015)<\/span><br \/>\n<span style=\"color: #000000\">&#8211; M. Cittadini et al., CARBON (2014)<\/span><\/p>\n<hr \/>\n<h4 style=\"text-align: center\">BIOPOLYMER BASED NANOCOMPOSITES<\/h4>\n<p><span style=\"color: #000000\"><strong><em>Collaborators: <\/em><\/strong>Prof. Fiorenzo Omenetto (Tufts University), Dr. Giovanni Perotto (IIT-Genova)<\/span><\/p>\n<p><span style=\"color: #000000\"><img loading=\"lazy\" decoding=\"async\" class=\" wp-image-1309 alignleft\" src=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_silk.png\" alt=\"\" width=\"394\" height=\"158\" srcset=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_silk.png 1752w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_silk-300x120.png 300w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_silk-1024x411.png 1024w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_silk-768x308.png 768w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_silk-1536x616.png 1536w\" sizes=\"auto, (max-width: 394px) 100vw, 394px\" \/><span style=\"color: #000000\">Biopolymer based composites are a new class of materials that involve a naturally occurring polymer (biopolymer) in combination with an inorganic moiety. These hybrids mate<\/span><span style=\"background-color: transparent\">rials combine the advantages of the biopolymeric matrix, such as biocompatibility and biodegradability, with the functional properties provided by the inorganic fillers (often in the form of nanoparticles), and present interesting application in, among others, optical and photoelectrical devices, biomedical engineering, sensing, water purification. For example, we develop composites materials using silk fibroin as matrix, a protein derived from silkworm cocoons.<\/span><\/span><\/p>\n<p><span style=\"color: #000000\"><em><strong>References:<\/strong><\/em><\/span><br \/>\n<span style=\"color: #000000\">&#8211; E. Colusso et al, ADV. MAT. INTER. (2018)<\/span><br \/>\n<span style=\"color: #000000\">&#8211; E. Colusso et al., MATER. CHEM. C (2017)<\/span><br \/>\n<span style=\"color: #000000\">&#8211; G. Perotto et al., ADV. MAT. (2015)<\/span><\/p>\n<hr \/>\n<h4 style=\"text-align: center\">INGEGNERIZATION OF SURFACES FOR WATER CONDENSATION<\/h4>\n<p><span style=\"color: #000000\"><strong><em>Collaborators: <\/em><\/strong>Prof. Davide Del Col (Unipd, DII), Prof.ssa Chiara Neto (University of Sydney)<\/span><\/p>\n<p><span style=\"color: #000000\"><img loading=\"lazy\" decoding=\"async\" class=\" wp-image-1310 alignleft\" src=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_cond.png\" alt=\"\" width=\"405\" height=\"160\" srcset=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_cond.png 1769w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_cond-300x119.png 300w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_cond-1024x405.png 1024w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_cond-768x304.png 768w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_cond-1536x608.png 1536w\" sizes=\"auto, (max-width: 405px) 100vw, 405px\" \/>The control of wetting behaviour of solid surfaces is a key aspect in a lot of industrial and every-day life applications, as for example realization of self-cleaning surfaces or the control of water condensation. The fabrication of superhydrophobic, super hydrophilic or patterned surfaces using cheap, scalable and robust material would have a significant technological implication. In our group we worked on the fabrication of inorganic and hybrid coatings on metals with controlled wettability to promote drop-wise condensation for application ranging from heat transfer to dehumidification.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p><span style=\"color: #000000\"><em><strong>References:<\/strong><\/em><\/span><br \/>\n<span style=\"color: #000000\">&#8211; E. Colusso et al., ADV. MATER. INTER. (2019)<\/span><br \/>\n<span style=\"color: #000000\">&#8211; R. Paring et al., SURF. COAT. TECHNOLOGY (2018)<\/span><br \/>\n<span style=\"color: #000000\">&#8211; D. Del Col et al., INT. JOUR. HEAT MASS TRANSFER (2017)<\/span><\/p>\n<hr \/>\n<h4 style=\"text-align: center\">ADVANCED CERAMICS FOR OPTICS<\/h4>\n<p><span style=\"color: #000000\"><strong><em>Collaborators: <\/em><\/strong>Pro<\/span><span style=\"color: #000000;background-color: transparent\">f. Marco Meneghini (Unipd, DEI) and Prof. Nicola Trivellin (Unipd, DII)<\/span><\/p>\n<p><img loading=\"lazy\" decoding=\"async\" class=\"wp-image-1311 alignleft\" src=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led.png\" alt=\"\" width=\"408\" height=\"140\" srcset=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led.png 2123w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led-300x103.png 300w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led-1024x351.png 1024w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led-768x263.png 768w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led-1536x527.png 1536w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led-2048x702.png 2048w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_led-1920x658.png 1920w\" sizes=\"auto, (max-width: 408px) 100vw, 408px\" \/><\/p>\n<p><span style=\"color: #000000\">Phosphor converted LEDs are at the base of the rapidly growing industry of solid-state lighting. In our group we are developing new and improved glass and ceramics-based matrices for yellow phosphors to produce white light from a blue GaN laser. The reason that the use of a semiconductor laser is interesting from general lighting is the high light intensity, luminous efficiency and optical management of the light beam.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p><span style=\"color: #000000\"><em><strong>References:<\/strong><\/em><\/span><\/p>\n<p>&#8211; A. Longato et al., CERAM. INTER. (2021)<br \/>\n<span style=\"color: #000000\">&#8211; A. Longato et al., PROC. SPIE (2019)<\/span><\/p>\n<hr \/>\n<h4 style=\"text-align: center\">NANOPOWDER FOR CATALYSIS<\/h4>\n<p><span style=\"color: #000000\"><strong><em>Collaborators: <\/em><\/strong>Prof. Gaetano Granozzi (Unipd, DISC), Dr. Marco Bersani (Particular Materials)<\/span><\/p>\n<p><span style=\"color: #000000\"><img loading=\"lazy\" decoding=\"async\" class=\" wp-image-1313 alignleft\" src=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_catalysis.png\" alt=\"\" width=\"416\" height=\"160\" srcset=\"https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_catalysis.png 1198w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_catalysis-300x116.png 300w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_catalysis-1024x395.png 1024w, https:\/\/research.dii.unipd.it\/nanoeng\/wp-content\/uploads\/sites\/5\/2020\/01\/Immagine_catalysis-768x296.png 768w\" sizes=\"auto, (max-width: 416px) 100vw, 416px\" \/>We synthesize nanopowder and nanocomposite ceramics containing metallic nanoparticles by using wet chemistry for application in catalysis. For example, TiOxCy porous powder containing Pt nanoparticles have been obtained impregnating commercial carbon black with titanium isopropoxide and platinum chloride dispersed in alcohol. Such nanocomposites powders are used in direct ethanol fuel cell.<\/span><\/p>\n<p>&nbsp;<\/p>\n<p><span style=\"color: #000000\"><em><strong>References:<\/strong><\/em><\/span><br \/>\n<span style=\"color: #000000\">&#8211; NS. Nia et al., ELECTR. ACTA (2019)<\/span><br \/>\n<span style=\"color: #000000\">&#8211; M. Bersani et al., CERAM. INTER. (2016)<\/span><\/p>\n<p>&nbsp;<\/p>\n","protected":false},"excerpt":{"rendered":"<p>CURRENT RESEARCH TOPICS GAS SENSOR FOR ENVIROMENTAL MONITORING Collaborators: Prof. Paul Mulvaney (Melbourne University), Prof. Giovanni Mattei and Prof. Filippo Romanato (Unipd, DFA), Prof. Wojtek Wlodarski and Dr. Enrico Della Gaspera (RMIT University) Surface plasmons (SPs) are coherent electron oscillations that exist at the interface between any two materials where the real part of the&hellip; <br \/> <a class=\"read-more\" href=\"https:\/\/research.dii.unipd.it\/nanoeng\/research\/\">Leggi tutto<\/a><\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"folder":[],"class_list":["post-213","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.5 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Research - NANOENG<\/title>\n<meta name=\"description\" content=\"Nanomaterials Engineering Group of the Industrial Engineering Department of University of Padova. 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