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一种用于光驱动绿色分子转化的混合催化剂。

A Hybrid Catalyst for Light-Driven Green Molecular Transformations.

作者信息

Shimakoshi Hisashi, Hisaeda Yoshio

机构信息

Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka, 819-0395, Japan.

出版信息

Chempluschem. 2017 Jan;82(1):18-29. doi: 10.1002/cplu.201600303. Epub 2016 Oct 6.

Abstract

This Minireview is focused on the development of hybrid catalysts composed of photosensitizers and a metal complex, especially vitamin B derivatives. The semiconductor-metal complex composites are effective photocatalysts for molecular transformations due to the synergistic effect between the two components. The design of a B complex for the hybridization with TiO was simple and straightforward-cobyrinic acid, having seven carboxylic groups derived from naturally occurring B is stably immobilized on the TiO . By using the hybrid catalysts as mimics of B -dependent enzymes, light-driven reactions such as the dechlorination of organic halide pollutants, and radical-mediated isomerization proceeded catalytically. In addition to the enzyme-mimicking reactions, bioinspired reactions were also developed with the hybrid catalyst. The B -TiO hybrid catalyst was used for hydrogen evolution and alkene reduction by UV light irradiation, and the cobalt-hydrogen complex (Co-H complex) was considered to be a putative intermediate of the reactions. The multidisciplinary concept for the design of a hybrid catalyst is described in this Minireview.

摘要

本综述聚焦于由光敏剂和金属配合物(尤其是维生素B衍生物)组成的杂化催化剂的发展。半导体-金属配合物复合材料由于两种组分之间的协同效应,是用于分子转化的有效光催化剂。用于与TiO杂交的B配合物的设计简单直接——具有七个源自天然存在的B的羧基的钴胺酸稳定地固定在TiO上。通过使用杂化催化剂作为依赖B的酶的模拟物,光驱动反应如有机卤化物污染物的脱氯以及自由基介导的异构化得以催化进行。除了模拟酶的反应外,还利用杂化催化剂开发了受生物启发的反应。通过紫外光照射,B-TiO杂化催化剂用于析氢和烯烃还原,钴-氢配合物(Co-H配合物)被认为是这些反应的假定中间体。本综述描述了杂化催化剂设计的多学科概念。

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