{"id":39635,"date":"2020-12-15T14:00:22","date_gmt":"2020-12-15T19:00:22","guid":{"rendered":"https:\/\/dev.inrs.ca\/?p=39635"},"modified":"2020-12-15T14:05:58","modified_gmt":"2020-12-15T19:05:58","slug":"changing-graphene-properties-one-bond-at-a-time","status":"publish","type":"post","link":"https:\/\/dev.inrs.ca\/en\/news\/changing-graphene-properties-one-bond-at-a-time\/","title":{"rendered":"Changing graphene properties one bond at a time"},"content":{"rendered":"\n<p style=\"font-size:clamp(14px, 0.875rem + ((1vw - 3.2px) * 0.602), 19px);px\"><strong>Professor Federico Rosei collaborated with an international team to modify the properties of graphene for its use in electronics.<\/strong><\/p>\n\n\n\n<div class=\"wp-block-image\"><figure class=\"aligncenter size-large is-resized\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-liaison-recherches-inrs-1-1024x551.png\" alt=\"\" class=\"wp-image-39643\" width=\"967\" height=\"520\" srcset=\"https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-liaison-recherches-inrs-1-1024x551.png 1024w, https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-liaison-recherches-inrs-1-300x161.png 300w, https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-liaison-recherches-inrs-1-768x413.png 768w, https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-liaison-recherches-inrs-1.png 1165w\" sizes=\"auto, (max-width: 967px) 100vw, 967px\" \/><figcaption>Visualization of the reaction using a scanning tunneling microscope.<\/figcaption><\/figure><\/div>\n\n\n\n<div style=\"height:20px\" aria-hidden=\"true\" class=\"wp-block-spacer\"><\/div>\n\n\n\n<p class=\"has-drop-cap\">An international research team involving Professor <a href=\"https:\/\/dev.inrs.ca\/en\/research\/professors\/federico-rosei\/\">Federico Rosei<\/a> of the Institut national de la recherche scientifique (INRS) has demonstrated a novel process to modify the structure and properties of graphene, a one atom thick carbon. This chemical reaction, known as photocycloaddition, modifies the bonds between atoms using ultraviolet (UV) light. The <a href=\"https:\/\/www.nature.com\/articles\/s41557-020-0540-2#Ack1\">results<\/a> of the study were recently published in the prestigious journal <a href=\"https:\/\/www.nature.com\/nchem\/\" target=\"_blank\" rel=\"noreferrer noopener\"><em>Nature Chemistry<\/em><\/a>.<\/p>\n\n\n\n<p>Graphene has outstanding physical, optical and mechanical properties. For instance, it is commonly used in the manufacture of transparent touch screens, in aerospace, and in biomedicine. This material, however, has limited use in electronics.<\/p>\n\n\n\n<p>\u201cNo other material has properties similar to graphene, yet unlike semiconductors used in electronics, it lacks a band gap. In electronics, this gap is a space in which there are no energy levels that can be occupied by electrons. Yet it is essential for interacting with light,\u201d explains Professor Federico Rosei of INRS\u2019s \u00c9nergie Mat\u00e9riaux T\u00e9l\u00e9communications Research Centre.<\/p>\n\n\n\n<div class=\"wp-block-image\"><figure class=\"aligncenter size-large is-resized\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-couche-nano-1-1024x413.png\" alt=\"\" class=\"wp-image-39644\" width=\"967\" height=\"390\" srcset=\"https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-couche-nano-1-1024x413.png 1024w, https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-couche-nano-1-300x121.png 300w, https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-couche-nano-1-768x310.png 768w, https:\/\/dev.inrs.ca\/wp-content\/uploads\/2020\/12\/Rosei-Federico-Graphene-couche-nano-1.png 1200w\" sizes=\"auto, (max-width: 967px) 100vw, 967px\" \/><\/figure><\/div>\n\n\n\n<p>\u201cThe multidisciplinary group of researchers from Canada, China, Denmark, France and the United Kingdom succeeded in modifying graphene so as to create a band gap. Current research is rather fundamental but could have repercussions over the next few years in optoelectronics, such as in the fabrication of photodetectors or in the field of solar energy. These include the manufacture of high-performance photovoltaic cells for converting solar energy into electricity, or the field of nanoelectronics, for the extreme miniaturisation of devices,\u201d emphasizes Professor Rosei. &nbsp;<\/p>\n\n\n\n<p>This breakthrough is complementary to the results published in <a href=\"https:\/\/www.nature.com\/nmat\/\" target=\"_blank\" rel=\"noreferrer noopener\"><em>Nature Materials<\/em><\/a>, in May 2020, by an Italian-Canadian team of researchers under the supervision of Professor Rosei.<\/p>\n\n\n\n<p>Professor Rosei\u2019s research has been recognized numerous times by national and international awards and distinctions. These include the recent <a href=\"https:\/\/dev.inrs.ca\/actualites\/la-medaille-brimacombe-accordee-a-federico-rosei\/\">Brimacombe Medal<\/a> from the Minerals, Metals &amp; Materials Society (TMS), the Royal Society of Chemistry, which identified him as one of the 5% most cited authors for its journals in 2019, and the Stanford list of the 2% most cited researchers in the world.<\/p>\n\n\n\n<h3 class=\"wp-block-heading\"><strong>About the study<\/strong><\/h3>\n\n\n\n<p>The article \u201cLong-range ordered and atomic-scale control of graphene hybridization by photocycloaddition\u201d was published on October 19, 2020, in the journal <em>Nature Chemistry<\/em>. The research group has, among others, received financial support from the Canada Research Chairs Program, the National Natural Science Foundation of China, the Engineering and Physical Sciences Research Council and the State Key Laboratory of Urban Water Resource and Environment.<\/p>\n\n\n\n<p><\/p>\n","protected":false},"excerpt":{"rendered":"<p>Professor Federico Rosei collaborated with an international team to modify the properties of graphene for its use in electronics.<\/p>\n","protected":false},"author":4,"featured_media":39640,"comment_status":"closed","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"_acf_changed":false,"footnotes":""},"categories":[688],"tags":[],"sectors":[735,731],"class_list":["post-39635","post","type-post","status-publish","format-standard","has-post-thumbnail","hentry","category-innover-a-linrs-en","sectors-energie-en","sectors-materiaux-en"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium 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