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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Approaches to efficient molecular catalyst systems for photochemical H _2 production using [FeFe]-hydrogenase active site mimics
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Approaches to efficient molecular catalyst systems for photochemical H _2 production using [FeFe]-hydrogenase active site mimics

机译:[FeFe]-加氢酶活性位点模拟物用于光化学生产H _2的高效分子催化剂系统的方法

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摘要

The research on structural and functional biomimics of the active site of [FeFe]-hydrogenases is in an attempt to elucidate the mechanisms of H _2-evolution and uptake at the [FeFe]-hydrogenase active site, and to learn from Nature how to create highly efficient H_2-production catalyst systems. Undoubtedly, it is a challenging, arduous, and long-term work. In this perspective, the progresses in approaches to photochemical H _2 production using mimics of the [FeFe]-hydrogenase active site as catalysts in the last three years are reviewed, with emphasis on adjustment of the redox potentials and hydrophilicity of the [FeFe]-hydrogenase active site mimics to make them efficient catalysts for H_2 production. With gradually increasing understanding of the chemistry of the [FeFe]-hydrogenases and their mimics, more bio-inspired proton reduction catalysts with significantly improved efficiency of H_2 production will be realized in the future.
机译:[FeFe]-加氢酶活性位点的结构和功能仿生学研究旨在阐明[FeFe]-加氢酶活性位点的H _2进化和吸收机制,并向自然界学习如何创建高效的H_2生产催化剂系统。无疑,这是一项具有挑战性,艰巨而长期的工作。从这个角度出发,回顾了过去三年中以[FeFe]-加氢酶活性位点的模拟物为催化剂的光化学H _2生产方法的进展,重点是调整[FeFe]-的氧化还原电位和亲水性。氢化酶活性位点模仿使其成为生产H_2的有效催化剂。随着对[FeFe]-加氢酶及其模拟物化学方法的逐渐了解,未来将实现更多生物启发的质子还原催化剂,H_2的生产效率将大大提高。

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