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聚合物氮化碳衍生光催化剂用于水分解和氮气固定。

Polymeric Carbon Nitride-Derived Photocatalysts for Water Splitting and Nitrogen Fixation.

机构信息

School of Chemical and Biological Engineering, Qilu Institute of Technology, Jinan, 250200, P. R. China.

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science (MOE), and College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao, 266042, P. R. China.

出版信息

Small. 2021 Apr;17(13):e2005149. doi: 10.1002/smll.202005149. Epub 2021 Mar 9.

Abstract

Photocatalysis is a promising energy conversion and environmental restoration technology. The main focus of photocatalysis is the development and manufacture of highly efficient photocatalysts. Semiconductor-based photocatalysis technology based on harnessing solar energy is considered as an attractive approach to solve the problems of global energy shortage and environmental pollution. Since 2009 pioneering work has been carried out on polymeric carbon nitride (PCN) for visible photocatalytic water splitting, thus PCN-based photocatalysis has become a hot research topic, demanding significant research attention. This article reviews the physical and chemical properties, synthesis methods, and the methods to control the morphology, heteroatom doping, and construction of heterojunctions to improve the performance of PCN-based photocatalysts in water splitting and nitrogen fixation. Through different design strategies, the photo-generated electron-hole pair separation efficiency of PCN materials can be effectively improved, thereby improving their photocatalytic performance. Finally, the challenges of PCN-based photocatalysts in water splitting and nitrogen fixation applications are discussed herein. It is strongly believed that through different design strategies, efficient PCN-based photocatalysts can be constructed for both water splitting and nitrogen reduction. These excellent modification strategies can be used as a guiding theory for photocatalytic reactions of other promising catalysts and further promote the development of photocatalysis.

摘要

光催化是一种很有前途的能量转换和环境修复技术。光催化的主要重点是开发和制造高效的光催化剂。基于利用太阳能的半导体光催化技术被认为是解决全球能源短缺和环境污染问题的一种有吸引力的方法。自 2009 年以来,人们一直在探索用于可见光光催化水分解的聚合物碳氮化物(PCN),因此 PCN 基光催化已成为一个热门的研究课题,需要大量的研究关注。本文综述了 PCN 基光催化剂在水分解和固氮中的物理化学性质、合成方法以及控制形态、杂原子掺杂和构建异质结以提高其性能的方法。通过不同的设计策略,可以有效地提高 PCN 材料的光生电子-空穴对分离效率,从而提高其光催化性能。最后,本文讨论了 PCN 基光催化剂在水分解和固氮应用中面临的挑战。人们坚信,通过不同的设计策略,可以构建高效的 PCN 基光催化剂,用于水分解和氮还原。这些优秀的改性策略可以作为其他有前途的催化剂光催化反应的指导理论,并进一步推动光催化的发展。

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