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共价有机框架光催化剂:结构与应用。

Covalent organic framework photocatalysts: structures and applications.

机构信息

College of Environmental Science and Engineering, Hunan University and Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education, Changsha 410082, P. R. China.

出版信息

Chem Soc Rev. 2020 Jun 21;49(12):4135-4165. doi: 10.1039/d0cs00278j. Epub 2020 May 18.

Abstract

In the light of increasing energy demand and environmental pollution, it is urgently required to find a clean and renewable energy source. In these years, photocatalysis that uses solar energy for either fuel production, such as hydrogen evolution and hydrocarbon production, or environmental pollutant degradation, has shown great potential to achieve this goal. Among the various photocatalysts, covalent organic frameworks (COFs) are very attractive due to their excellent structural regularity, robust framework, inherent porosity and good activity. Thus, many studies have been carried out to investigate the photocatalytic performance of COFs and COF-based photocatalysts. In this critical review, the recent progress and advances of COF photocatalysts are thoroughly presented. Furthermore, diverse linkers between COF building blocks such as boron-containing connections and nitrogen-containing connections are summarised and compared. The morphologies of COFs and several commonly used strategies pertaining to photocatalytic activity are also discussed. Following this, the applications of COF-based photocatalysts are detailed including photocatalytic hydrogen evolution, CO conversion and degradation of environmental contaminants. Finally, a summary and perspective on the opportunities and challenges for the future development of COF and COF-based photocatalysts are given.

摘要

鉴于能源需求的不断增长和环境污染的加剧,急需寻找一种清洁可再生的能源。近年来,利用太阳能进行燃料生产(如氢气的产生和碳氢化合物的生产)或环境污染物降解的光催化技术,已经显示出实现这一目标的巨大潜力。在各种光催化剂中,共价有机框架(COFs)因其出色的结构规整性、坚固的框架、固有孔隙率和良好的活性而备受关注。因此,已经进行了许多研究来研究 COFs 和基于 COF 的光催化剂的光催化性能。在这篇重要评论中,彻底介绍了 COF 光催化剂的最新进展和进展。此外,还总结和比较了 COF 结构单元之间的各种连接体,例如含硼连接体和含氮连接体。还讨论了 COFs 的形态和几种常见的提高光催化活性的策略。接下来,详细介绍了基于 COF 的光催化剂的应用,包括光催化制氢、CO 转化和环境污染物的降解。最后,对 COF 和基于 COF 的光催化剂未来发展的机遇和挑战进行了总结和展望。

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