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A hybrid artificial photosynthesis system with molecular catalysts covalently linked onto TiO2 as electron relay for efficient photocatalytic hydrogen evolution

查看全文 作  者:Jie [1]Zhang;Gehong [1]Zhang;Jing [1]Zhang 高影响力作者 机构地区:[1]School of Civil and Architecture Engineering,Xi'an Technological University,Xi'an,710021,China高影响力机构 出  处:《Journal of Materials Science & Technology》索引2020年第47卷第15期,共6页高影响力期刊 基  金:supported financially by the Scientific Research Program funded by Shaanxi Provincial Education Department (No. 15JK1369)。 摘  要:Efficient charge carrier transfer from light harvesters to catalysts greatly determines the photocatalytic activity in an artificial photosynthesis(AP) system for solar hydrogen evolution.In this study,an AP system composed of xanthene dye as light harvester and cobaloxime molecular complex as catalyst,with TiO2 as electron relay,was designed for photocatalytic hydrogen evolution under visible light(λ>420 nm).It was demonstrated that with cobaloxime molecule covalently linked onto the TiO2 electron relay,the resulting hybrid AP system exhibited much increased photocatalytic activity as compared to that without TiO2.The greatly increased photocatalytic activity should be due to the efficient electron transfer from xanthene dye as light harvester and cobaloxime molecular complex as catalyst,shuttled by the TiO2 electron relay,for the following water reduction reaction.The present study demonstrates a facile and feasible strategy to guide the design of high performance AP systems through the electron relay shuttled and promoted cha rge transfer process. 关 键 词:Artificial photosynthesis Molecular catalysts Electron relay Photocatalytic hydrogen evolution
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