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The advanced development of innovative photocatalytic coupling strategies for hydrogen production

作     者:Yuehai Zhi Chen Gu Huachao Ji Kang Chen Wenqi Gao Jianmei Chen Dafeng Yan Yuehai Zhi;Chen Gu;Huachao Ji;Kang Chen;Wenqi Gao;Jianmei Chen;Dafeng Yan

作者机构:College of Electronic and Optical Engineering&College of Flexible Electronics(Future Technology)Nanjing 210023China Hubei Key Laboratory for Precision Synthesis of Small Molecule Pharmaceuticals&Ministry of Education Key Laboratory for the Synthesis and Application of Organic Functional Molecules&College of Chemistry and Chemical EngineeringHubei UniversityWuhan 430062China 

出 版 物:《Chinese Chemical Letters》 (中国化学快报(英文版))

年 卷 期:2025年第36卷第1期

页      面:80-91页

核心收录:

学科分类:0202[经济学-应用经济学] 02[经济学] 020205[经济学-产业经济学] 

基  金:financially supported by the National Natural Science Foundation of China(No.22202065) 

主  题:Photocatalysis Pollutants removal Valorization of organics Catalyst design 

摘      要:Photocatalytic technology harnesses solar energy to facilitate chemical transformations,presenting significant potential in energy generation and environmental ***,the conventional O_(2)evolution process is hindered by high reaction barriers and inefficiencies,which limit its widespread ***,exploring novel photocatalytic coupling strategies to replace water oxidation has become a key route to enhance the efficiency of H_(2)*** this review,organic pollutants removal and the valorization of organics as substitutes for water oxidation coupling strategies for photocatalytic H_(2)production are comprehensively *** strategies not only circumvent the high reaction barriers associated with O_(2)evolution to enhance the H_(2)production but also aid in the removing of organic pollutants or synthesis of value-added *** also present future research directions and underscore the significance of advanced catalyst design,in-depth analysis of reaction mechanisms,and systematic optimization strategies in realizing an efficient and sustainable photocatalytic *** guidance is anticipated to provide theoretical and practical new insights for the future development of photocatalytic coupling reactions,fostering further explorations in the realm of renewable energy and environmental governance.

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