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class=\"title\">Chemical News</h1> <div class=\"content-middle\"><div id=\"aggregator\">\n <div class=\"feed-source\">\n <a href=\"http://feeds.rsc.org/rss/GC\" class=\"feed-icon\"><img src=\"/misc/feed.png\" alt=\"Condividi contenuti\" title=\"feed Chemical News\" width=\"16\" height=\"16\" /></a> <a href=\"http://pubs.rsc.org/en/Journals/Journal/GC\" class=\"feed-image\"><img src=\"http://pubs.rsc.org/content/NewImages/rsc_publishing_logo.gif\" alt=\"RSC - Green Chem. latest articles\" /></a> <div class=\"feed-description\">\n RSC - Green Chem. latest articles </div>\n <div class=\"feed-url\">\n <em>URL:</em> <a href=\"http://pubs.rsc.org/en/Journals/Journal/GC\">http://pubs.rsc.org/en/Journals/Journal/GC</a>\n </div>\n <div class=\"feed-updated\">\n <em>Aggiornato:</em> 2 settimane 6 giorni fa </div>\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC02465J\">Low-temperature modified-immersion molten ZnCl2-carbonization and activation for continuous production of mesoporous carbon from plastic waste</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">16 novembre, 2025 - 16:24</span>\n </div>\n\n <div class=\"feed-item-body\">\n <p><img align=\"center\" src=\"/services/images/RSCpubs.ePlatform.Service.FreeContent.ImageService.svc/ImageService/image/GA?id=D5GC02465J\" /></p><i><b>Green Chem.</b></i>, 2025, <b>27</b>,14061-14075<br /><b>DOI</b>: 10.1039/D5GC02465J, PaperTheerawat Waiyaka, Rungkiat Nganglumpoon, Chonticha Rajrujithong, Weerachon Tolek, Pui Vun Chai, Masayuki Shirai, Anuchit Wuttitrairat, Paisan Kittisupakorn, Joongjai Panpranot<br />We developed a prototype continuous MSCA system using a modified-immersion ZnCl2 molten salt process at 350 °C to convert common plastic waste (PP, PLA, and PET) into high-surface-area mesoporous carbon for energy storage applications.<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC04619J\">Solvent-Less Environmentally Benign Amino Ester, Amide, and Peptide Synthesis Enabled by Resonant Acoustic Mixing</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">16 novembre, 2025 - 16:24</span>\n </div>\n\n <div class=\"feed-item-body\">\n <i><b>Green Chem.</b></i>, 2025, Accepted Manuscript<br /><b>DOI</b>: 10.1039/D5GC04619J, Paper<img alt=\'Open Access\' src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/open_access_blue.png\' /> Open Access<a rel=\'license\' href=\'http://creativecommons.org/licenses/by-nc/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'> <img src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/CCBY-NC.png\' alt=\'Creative Commons Licence\' border=\'none\' /></a>&amp;nbsp This article is licensed under a <a text-decoration=\"none\" rel=\'license\' href=\'http://creativecommons.org/licenses/by-nc/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'>Creative Commons Attribution-NonCommercial 3.0 Unported Licence.</a>Nassim Maarouf-Mesli, Justin Desjardins-michaud, Zeynab IMANI, Kinshuk Ghosh, Felix Polyak, William D Lubell<br />The demand for sustainable methods for peptide synthesis grows imperatively with their escalating use in therapeutic and biomedical applications. The cornerstone technology of solidphase peptide synthesis has unsustainable environmental impact...<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC03448E\">Hyperproduction of 3-hydroxybutyrate using engineered probiotic E. coli Nissle 1917 from glucose and CO2-derived acetate</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">16 novembre, 2025 - 16:24</span>\n </div>\n\n <div class=\"feed-item-body\">\n <p><img align=\"center\" src=\"/services/images/RSCpubs.ePlatform.Service.FreeContent.ImageService.svc/ImageService/image/GA?id=D5GC03448E\" /></p><i><b>Green Chem.</b></i>, 2025, Advance Article<br /><b>DOI</b>: 10.1039/D5GC03448E, PaperFu-Ren Yang, Ye Zheng, Rui-Zhe Deng, Lin Xia, Huai-Ming Wang, Yi-Hao Deng, Wei Situ, Yan-Chun Xiao, Hong-Wei Shen, Jin-Yan Lv, Liu-Song Yu, Hui Wang, Yi-Na Lin, Jian-Wen Ye<br />Hyperproduction of 3-HB (105 g L−1) was achieved using recombinant EcN with glucose and CO2-derived acetate with a significantly reduced carbon footprint.<br />To cite this article before page numbers are assigned, use the DOI form of citation above.<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC03986J\">Integrating catalytic fractionation and microbial funneling to produce 2-pyrone-4,6-dicarboxylic acid and ethanol</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">16 novembre, 2025 - 16:24</span>\n </div>\n\n <div class=\"feed-item-body\">\n <p><img align=\"center\" src=\"/services/images/RSCpubs.ePlatform.Service.FreeContent.ImageService.svc/ImageService/image/GA?id=D5GC03986J\" /></p><i><b>Green Chem.</b></i>, 2025, Advance Article<br /><b>DOI</b>: 10.1039/D5GC03986J, Paper<img alt=\'Open Access\' src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/open_access_blue.png\' /> Open Access<a rel=\'license\' href=\'http://creativecommons.org/licenses/by-nc/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'> <img src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/CCBY-NC.png\' alt=\'Creative Commons Licence\' border=\'none\' /></a>&amp;nbsp This article is licensed under a <a text-decoration=\"none\" rel=\'license\' href=\'http://creativecommons.org/licenses/by-nc/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'>Creative Commons Attribution-NonCommercial 3.0 Unported Licence.</a>Canan Sener, Emmanuel A. Aboagye, Steven D. Karlen, Jose M. Perez, German E. Umana, Yaoping Zhang, José Serate, Timothy J. Donohue, Daniel R. Noguera, Christos T. Maravelias<br />Concerted biomass fractionation and lignin depolymerization process integrated with microbial funneling to PDC, ethanol, and electricity results in a 29% reduction in the minimum selling costs for PDC and reduced environmental impact.<br />To cite this article before page numbers are assigned, use the DOI form of citation above.<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC04615G\">A feasible methanol economy for a green future</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">16 novembre, 2025 - 16:24</span>\n </div>\n\n <div class=\"feed-item-body\">\n <p><img align=\"center\" src=\"/services/images/RSCpubs.ePlatform.Service.FreeContent.ImageService.svc/ImageService/image/GA?id=D5GC04615G\" /></p><i><b>Green Chem.</b></i>, 2025, Advance Article<br /><b>DOI</b>: 10.1039/D5GC04615G, Paper<img alt=\'Open Access\' src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/open_access_blue.png\' /> Open Access<a rel=\'license\' href=\'http://creativecommons.org/licenses/by/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'> <img src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/CCBY.png\' alt=\'Creative Commons Licence\' border=\'none\' /></a>&amp;nbsp This article is licensed under a <a text-decoration=\"none\" rel=\'license\' href=\'http://creativecommons.org/licenses/by/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'>Creative Commons Attribution 3.0 Unported Licence.</a>Hidde Kolmeijer, Abhinandan Nabera, Antonio J. Martín, Gonzalo Guillén-Gosálbez, Javier Pérez-Ramírez<br />This study models a future methanol economy where combining biomass, biogas, and air-captured CO2 achieves net-zero emissions at about 32 USD2025 per person per month, close to Paris Agreement-aligned costs while delivering deeper emission cuts.<br />To cite this article before page numbers are assigned, use the DOI form of citation above.<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC04034E\">Visible-light-driven valorization of biomass-derived furfuryl alcohol to diesel precursors with simultaneous H2 evolution over a dual functional In2S3–Zn5In2S8 photocatalyst</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">12 novembre, 2025 - 20:56</span>\n </div>\n\n <div class=\"feed-item-body\">\n <p><img align=\"center\" src=\"/services/images/RSCpubs.ePlatform.Service.FreeContent.ImageService.svc/ImageService/image/GA?id=D5GC04034E\" /></p><i><b>Green Chem.</b></i>, 2025, Advance Article<br /><b>DOI</b>: 10.1039/D5GC04034E, PaperYibei Zhang, Hongyun Lu, Xuekai Qu, Lunan Wu, Zhenghao Song, Xinyi Ding, Peng Li, Xiu-Jie Yang, Dong Liu<br />Solar-driven In2S3–Zn5In2S8 heterostructures enable simultaneous furfuryl alcohol coupling and H2 production without sacrificial agents, offering a green route for biomass valorization and solar fuel coproduction.<br />To cite this article before page numbers are assigned, use the DOI form of citation above.<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC90203G\">Correction: A dynamic sulfur-rich network from silicone industry waste</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">12 novembre, 2025 - 03:37</span>\n </div>\n\n <div class=\"feed-item-body\">\n <i><b>Green Chem.</b></i>, 2025, <b>27</b>,13953-13954<br /><b>DOI</b>: 10.1039/D5GC90203G, Correction<img alt=\'Open Access\' src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/open_access_blue.png\' /> Open Access<a rel=\'license\' href=\'http://creativecommons.org/licenses/by/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'> <img src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/CCBY.png\' alt=\'Creative Commons Licence\' border=\'none\' /></a>&amp;nbsp This article is licensed under a <a text-decoration=\"none\" rel=\'license\' href=\'http://creativecommons.org/licenses/by/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'>Creative Commons Attribution 3.0 Unported Licence.</a>Zixiao Wang, Yuanyuan Qiu, Zheju Cheng, Honglu Huang, Yang Sui, Xin Liu, Yijie Yang, Yue Lu, Huie Zhu, Qingqing Ji, Jiajun Yan<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n<div class=\"feed-item\">\n <h3 class=\"feed-item-title\">\n <a href=\"http://pubs.rsc.org/en/Content/ArticleLanding/2025/GC/D5GC04476F\">Room-temperature chromatographic H2/D2 separation via a solid dihydrogen complex with balanced thermodynamics and kinetics</a>\n </h3>\n\n <div class=\"feed-item-meta\">\n <span class=\"feed-item-date\">12 novembre, 2025 - 03:37</span>\n </div>\n\n <div class=\"feed-item-body\">\n <p><img align=\"center\" src=\"/services/images/RSCpubs.ePlatform.Service.FreeContent.ImageService.svc/ImageService/image/GA?id=D5GC04476F\" /></p><i><b>Green Chem.</b></i>, 2025, Advance Article<br /><b>DOI</b>: 10.1039/D5GC04476F, Paper<img alt=\'Open Access\' src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/open_access_blue.png\' /> Open Access<a rel=\'license\' href=\'http://creativecommons.org/licenses/by/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'> <img src=\'http://sod-a.rsc-cdn.org/pubs.rsc-uat.org/content/NewImages/CCBY.png\' alt=\'Creative Commons Licence\' border=\'none\' /></a>&amp;nbsp This article is licensed under a <a text-decoration=\"none\" rel=\'license\' href=\'http://creativecommons.org/licenses/by/3.0/\' target=\'_blank\' title=\'This link will open in a new browser window\'>Creative Commons Attribution 3.0 Unported Licence.</a>Tamon Yamauchi, Taku Kitayama, Kaiji Uchida, Nino Keuzenkamp, Hiroaki Iguchi, Ryojun Toyoda, Ryota Sakamoto, Hao Xue, Naoki Kishimoto, Shin-ichiro Noro, Shinya Takaishi<br />Mn-PCy3 showed the highest H2/D2 separation ability among known materials due to a large difference in ZPVE. D2 separation with pressure swing adsorption using Mn-PCy3 could be achieved with ∼1/10 of the energy cost for distillation.<br />To cite this article before page numbers are assigned, use the DOI form of citation above.<br />The content of this RSS Feed (c) The Royal Society of Chemistry </div>\n\n\n</div>\n <div class=\"item-list\"><ul class=\"pager\"><li class=\"pager-first first\"><a href=\"/it/aggregator/sources/2\" title=\"Vai alla prima pagina\" class=\"active\">« prima</a></li>\n<li class=\"pager-previous\"><a href=\"/it/aggregator/sources/2?page=11\" title=\"Vai alla pagina precedente\" class=\"active\">‹ precedente</a></li>\n<li class=\"pager-ellipsis\">…</li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=4\" title=\"Vai a pagina 5\" class=\"active\">5</a></li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=5\" title=\"Vai a pagina 6\" class=\"active\">6</a></li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=6\" title=\"Vai a pagina 7\" class=\"active\">7</a></li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=7\" title=\"Vai a pagina 8\" class=\"active\">8</a></li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=8\" title=\"Vai a pagina 9\" class=\"active\">9</a></li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=9\" title=\"Vai a pagina 10\" class=\"active\">10</a></li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=10\" title=\"Vai a pagina 11\" class=\"active\">11</a></li>\n<li class=\"pager-item\"><a href=\"/it/aggregator/sources/2?page=11\" title=\"Vai a pagina 12\" class=\"active\">12</a></li>\n<li class=\"pager-current last\">13</li>\n</ul></div></div>\n</div>\n \n\n\n\n\n \n</div> <!-- end content -->\n\n<div style=\"clear:both\"></div>\n</div> <!-- end wrapper -->\n\n\n \n<div style=\"clear:both\"></div>\n<div id=\"footer-wrapper\">\n<div id=\"footer\">\n </div>\n</div> <!-- end footer wrapper -->\n\n<div style=\"clear:both\"></div>\n<div id=\"notice\"><p>Copyright &copy; 2012 Societ&agrave; Chimica Italiana. 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Premio Nazionale “CHEMISTRY’S GOT TALENT” Anno internazionale della Tavola Periodica degli Elementi

Il Dipartimento di Chimica U. Schiff dell'Università di Firenze in occasione dell'IYPT bandice un concorso riservato agli Studenti Universitari dei Corsi di Laurea Triennali o Magistrali delle Classi di Laurea L 27, LM 54, LM 71, ovvero delle Scuole di Dottorato in Chimica regolarmente iscritti alla data di scadenza del  bando qui riportato in allegato, promosso da ConChimica.

Potranno concorrere studenti singoli o gruppi di studenti. Il “gruppo di studenti” dovrà comunque fare riferimento ad un capofila che risulterà il referente, il destinatario del premio e parteciperà gratuitamente all’evento finale.

Gli altri partecipanti del gruppo riceveranno un attestato e un premio simbolico.
Uno studente non potrà far parte di più gruppi.
 
premio conchimica

Copyright © 2012 Società Chimica Italiana. All Rights Reserved.