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用于光催化和光热催化有机转化的金属有机框架材料。

Metal-organic frameworks for organic transformations by photocatalysis and photothermal catalysis.

作者信息

Jin Hong-Guang, Zhao Peng-Cheng, Qian Yunyang, Xiao Juan-Ding, Chao Zi-Sheng, Jiang Hai-Long

机构信息

School of Materials Science and Engineering, Changsha University of Science & Technology, Changsha, 410114, China.

Hefei National Research Center for Physical Sciences at the Microscale, Department of Chemistry, University of Science and Technology of China, Hefei, Anhui, 230026, China.

出版信息

Chem Soc Rev. 2024 Sep 16;53(18):9378-9418. doi: 10.1039/d4cs00095a.

Abstract

Organic transformation by light-driven catalysis, especially, photocatalysis and photothermal catalysis, denoted as photo(thermal) catalysis, is an efficient, green, and economical route to produce value-added compounds. In recent years, owing to their diverse structure types, tunable pore sizes, and abundant active sites, metal-organic framework (MOF)-based photo(thermal) catalysis has attracted broad interest in organic transformations. In this review, we provide a comprehensive and systematic overview of MOF-based photo(thermal) catalysis for organic transformations. First, the general mechanisms, unique advantages, and strategies to improve the performance of MOFs in photo(thermal) catalysis are discussed. Then, outstanding examples of organic transformations over MOF-based photo(thermal) catalysis are introduced according to the reaction type. In addition, several representative advanced characterization techniques used for revealing the charge reaction kinetics and reaction intermediates of MOF-based organic transformations by photo(thermal) catalysis are presented. Finally, the prospects and challenges in this field are proposed. This review aims to inspire the rational design and development of MOF-based materials with improved performance in organic transformations by photocatalysis and photothermal catalysis.

摘要

通过光驱动催化,特别是光催化和光热催化(统称为光(热)催化)实现的有机转化,是生产增值化合物的一种高效、绿色且经济的途径。近年来,基于金属有机框架(MOF)的光(热)催化因其结构类型多样、孔径可调且活性位点丰富,在有机转化领域引起了广泛关注。在本综述中,我们对基于MOF的光(热)催化用于有机转化进行了全面系统的概述。首先,讨论了MOF在光(热)催化中的一般机理、独特优势以及提高其性能的策略。然后,根据反应类型介绍了基于MOF的光(热)催化实现有机转化的突出实例。此外,还介绍了几种用于揭示基于MOF的光(热)催化有机转化的电荷反应动力学和反应中间体的代表性先进表征技术。最后,提出了该领域的前景和挑战。本综述旨在激发人们合理设计和开发在光催化和光热催化有机转化中具有更高性能的基于MOF的材料。

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