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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Cobaloxime coenzyme catalyzing artificial photosynthesis for hydrogen generation over CdS nanocrystals
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Cobaloxime coenzyme catalyzing artificial photosynthesis for hydrogen generation over CdS nanocrystals

机译:Cobaloxime辅酶催化人工光合作用在CdS纳米晶体上产生氢

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摘要

Inspired by the natural photosynthesis, artificial photosynthesis (AP) systems comprised of light harvesters and redox catalysts have been widely investigated for photocatalytic I:12 generation. Here we report an artificial photosynthesis system composed of CdS nanocrystals as photosensitizer, cobaloxime coenzyme (Co(dmgBF(2))(2)(H2O)(2), Co) as catalyst, and lactic acid (LA) as electron donor for H-2 generation in a fully aqueous solution. This CdS/Co/LA system exhibits exceptional high photocatalytic activity under visible light, with initial H-2 generation rate increased by 4000% compared to CdS/LA, which is even 700% as high as that of CdS/Pt/LA. The excellent photocatalytic performance of CdS/Co/LA should be attributed to the efficient electron transfer from CdS to Co, leading to the reduced charge recombination, as well as the, positively shifted Fermi level of CdS, decreasing the overpotential for H-2 generation. Moreover, the electron-coupling-electron-coupling (ECEC) mechanism, involving with the reduction of Co coenzyme followed by protonation and then reduction again, was supposed to produce the Co(II)-H intermediate active for catalyzing. H-2 evolution from aqueous solution. (C) 2016 Elsevier B.V. All rights reserved.
机译:受自然光合作用的启发,由光收集器和氧化还原催化剂组成的人工光合作用(AP)系统已被广泛研究用于光催化I:12生成。在这里我们报告了一个人工光合作用系统,该系统由作为光敏剂的CdS纳米晶体,作为催化剂的钴氧肟辅酶(Co(dmgBF(2))(2)(H2O)(2),Co)和乳酸(LA)构成的人工电子合成系统在完全水溶液中生成-2。这种CdS / Co / LA系统在可见光下显示出异常高的光催化活性,与CdS / LA相比,初始H-2生成速率提高了4000%,甚至比CdS / Pt / LA高700%。 CdS / Co / LA的优异光催化性能应归因于从CdS到Co的有效电子转移,从而导致电荷重组减少,以及CdS的费米能级正向移动,从而降低了H-2生成的过电位。此外,据推测,电子耦合电子耦合(ECEC)机理涉及还原Co辅酶,然后进行质子化,然后再还原,从而产生了具有催化作用的Co(II)-H中间体。 H-2从水溶液中析出。 (C)2016 Elsevier B.V.保留所有权利。

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