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共价有机框架-半导体基异质结构用于光催化应用。

Covalent Organic Framework-Semiconductor-Based Heterostructures for Photocatalytic Applications.

机构信息

School of Materials Science and Chemical Engineering, Ningbo University, Ningbo, 315211, P. R. China.

Key Laboratory of Advanced Mass Spectrometry and Molecular Analysis of Zhejiang Province, Ningbo University, Ningbo, 315211, P. R. China.

出版信息

ChemSusChem. 2023 May 19;16(10):e202300021. doi: 10.1002/cssc.202300021. Epub 2023 Mar 24.

Abstract

Photocatalysis is a promising and sustainable technology in the fields of energy conversion/storage and environment purification; however, the utilization of individual component as photocatalyst is generally restricted due to the low catalytic activity deriving from the rapid recombination of photogenerated electrons/holes. Covalent organic framework (COF)-semiconductor-based composite photocatalysts with synergistic effects provide a feasible route to achieve high-performance photocatalytic reactions with more active sites, strong light utilization ability, and high stability. In recent years, significant progress has been made in the rational design and preparation of the COF-semiconductors-based heterostructures for photocatalytic water splitting, carbon dioxide (CO ) reduction, and dye/pollutant degradation. In this Review, the synthetic strategies of COF-semiconductor-based heterostructures are first introduced, which includes the rational design of the morphology, connection modes, and type of heterojunctions. The performance of COF-semiconductor-based heterostructures in different photocatalytic reactions are comprehensively reviewed. The structure-activity relationship and the synergistic effects within the heterostructures are discussed, and the photocatalytic mechanism and the role of COFs during the photocatalytic process are also presented. Finally, an outlook and challenges of realizing COF-semiconductor-based heterostructures with simple synthesis methods, diverse functions, high performance, and well-defined reaction mechanisms are provided.

摘要

光催化是能源转换/存储和环境净化领域中一种很有前途和可持续的技术;然而,由于光生电子/空穴的快速复合,单个组分作为光催化剂的利用率通常受到限制。具有协同效应的共价有机骨架(COF)-半导体基复合光催化剂提供了一种可行的途径,可以实现具有更多活性位点、强光利用能力和高稳定性的高性能光催化反应。近年来,在合理设计和制备用于光解水、二氧化碳(CO )还原和染料/污染物降解的 COF-半导体基异质结构方面取得了重大进展。在这篇综述中,首先介绍了 COF-半导体基异质结构的合成策略,包括形貌、连接方式和异质结类型的合理设计。全面综述了 COF-半导体基异质结构在不同光催化反应中的性能。讨论了结构-活性关系和异质结构内的协同效应,并介绍了光催化机制和 COFs 在光催化过程中的作用。最后,对实现具有简单合成方法、多种功能、高性能和明确反应机制的 COF-半导体基异质结构提出了展望和挑战。

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