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超分子荧光金属环和金属笼中的光催化作用。

Photocatalysis in Supramolecular Fluorescent Metallacycles and Metallacages.

机构信息

Shanghai Key Laboratory of Green Chemistry and Chemical Processes, School of Chemistry and Molecular Engineering, East China Normal University, 3663 N. Zhongshan Road, Shanghai, 200062, P. R. China.

出版信息

Chem Asian J. 2021 Dec 1;16(23):3805-3816. doi: 10.1002/asia.202100942. Epub 2021 Sep 28.

Abstract

The utilization of photocatalytic techniques for achieving light-to-fuel conversion is a promising way to ease the shortage of energy and degradation of the ecological environment. Fluorescent metallacycles and metallacages have drawn considerable attention and have been used in widespread fields due to easy preparation and their abundant functionality including photocatalysis. This review covers recent advances in photocatalysis in discrete supramolecular fluorescent metallacycles and metallacages. The developments in the utilization of the metallacycles skeletons and the effect of fluorescence-resonance energy transfer for photocatalysis are discussed. Furthermore, the use of the ligands decorated by organic chromophores or redox metal sites in metallacages as photocatalysts and their ability to encapsulate appropriate catalytic cofactors for photocatalysis are summarized. For the sake of brevity, macrocycles and cages with inorganic coordination complexes such as ruthenium complexes and iridium complexes are not included in this minireview.

摘要

利用光催化技术实现光燃料转化是缓解能源短缺和生态环境恶化的一种有前途的方法。荧光金属环和金属笼由于易于制备以及丰富的功能(包括光催化)而受到广泛关注。本综述涵盖了离散超分子荧光金属环和金属笼中光催化的最新进展。讨论了金属环骨架的利用以及荧光共振能量转移对光催化的影响。此外,还总结了用有机发色团或氧化还原金属位点修饰的配体作为光催化剂的金属笼,以及它们封装适当的催化辅助因子进行光催化的能力。为简洁起见,本综述不包括具有无机配合物(如钌配合物和铱配合物)的大环和笼。

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