基于共价有机框架的光催化剂的合成与应用

IF 14.1 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Junxian Liu, Kezhen Qi, Xianglin Xiang, Abdollah Jamal Sisi, Alireza Khataee, Liqianyun Xu
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引用次数: 0

摘要

共价有机骨架因其优异的结构可调性、高比表面积、高孔隙率和良好的化学稳定性而成为光催化领域的研究热点。具体而言,它们通过将不同的分子构建块与适当的链接结合,构建π共轭体系,或将电子给体-受体单元引入共轭框架中,表现出独特的光电特性。合理调整的能带结构使共价有机骨架材料具有优异的光催化活性。本文综述了共价有机骨架材料作为有效光催化剂在制氢、CO2还原、污染物降解、有机转化等方面的应用。讨论了共价有机框架的合成方法和反应类型。综述了共价有机骨架材料在光催化中的研究进展、性能优化策略及表现形式。最后,简要介绍了共价有机框架光催化性能有待进一步提高的主要挑战和展望。通过深入了解共价有机框架的结构复杂性及其在光催化过程中的重要作用,这一努力促进了我们的理解,并为未来设计和开发新型共价有机框架提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Covalent Organic Framework-Based Photocatalysts from Synthesis to Applications

Covalent Organic Framework-Based Photocatalysts from Synthesis to Applications

Covalent organic frameworks have emerged as a hot spot in the field of photocatalysis due to their excellent structural tunability, high specific surface area, high porosity, and good chemical stability. Specifically, they exhibit distinctive optoelectronic features by integrating different molecular building blocks with appropriate links, constructing an π-conjugated system, or introducing electron donor–acceptor units into the conjugated framework. The reasonably adjusted band structure yields excellent photocatalytic activity of covalent organic framework materials. In this review, we comprehensively focus on applications of covalent organic framework materials as effective photocatalysts within the realm of hydrogen production, CO2 reduction, pollutant degradation, organic conversion and other aspects. The discussion encompasses synthesis methods and reaction types of covalent organic frameworks. This review also discusses the state-of-the-art research progress, performance optimization strategies and the diverse manifestations of covalent organic framework materials used in photocatalysis. Finally, the main challenges and prospects aimed at further improving the photocatalytic performance of covalent organic frameworks are briefly proposed. By giving us a thorough understanding of the structural complexities of covalent organic frameworks and their essential role in photocatalytic processes, this effort advances our understanding and serves as a guide for the future design and development of novel covalent organic frameworks.

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来源期刊
Energy & Environmental Materials
Energy & Environmental Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
17.60
自引率
6.00%
发文量
66
期刊介绍: Energy & Environmental Materials (EEM) is an international journal published by Zhengzhou University in collaboration with John Wiley & Sons, Inc. The journal aims to publish high quality research related to materials for energy harvesting, conversion, storage, and transport, as well as for creating a cleaner environment. EEM welcomes research work of significant general interest that has a high impact on society-relevant technological advances. The scope of the journal is intentionally broad, recognizing the complexity of issues and challenges related to energy and environmental materials. Therefore, interdisciplinary work across basic science and engineering disciplines is particularly encouraged. The areas covered by the journal include, but are not limited to, materials and composites for photovoltaics and photoelectrochemistry, bioprocessing, batteries, fuel cells, supercapacitors, clean air, and devices with multifunctionality. The readership of the journal includes chemical, physical, biological, materials, and environmental scientists and engineers from academia, industry, and policy-making.
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