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光催化Z型全水分解:粉末悬浮体系和颗粒片层体系不同优化策略的洞察

Photocatalytic Z-scheme Overall Water Splitting: Insight into Different Optimization Strategies for Powder Suspension and Particulate Sheet Systems.

作者信息

Wei Yuxue, Zhang Zhiyuan, Wang Wenjing, Song Zhimin, Cai Mengdie, Sun Song

机构信息

School of Chemistry and Chemical Engineering, Anhui University, Hefei, Anhui, 230601, China.

Department of Chemistry, Southern University of Science and Technology, Shenzhen, 518055, China.

出版信息

Chemphyschem. 2023 Aug 15;24(16):e202300216. doi: 10.1002/cphc.202300216. Epub 2023 Jun 19.

Abstract

Achieving solar light-driven photocatalytic overall water splitting is the ideal and ultimate goal for solving energy and environment issues. Photocatalytic Z-scheme overall water splitting has undergone considerable development in recent years; specific approaches include a powder suspension Z-scheme system with a redox shuttle and a particulate sheet Z-scheme system. Of these, a particulate sheet has achieved a benchmark solar-to-hydrogen efficiency exceeding 1.1 %. Nevertheless, owing to intrinsic differences in the components, structure, operating environment, and charge transfer mechanism, there are several differences between the optimization strategies for a powder suspension and particulate sheet Z-scheme. Unlike a powder suspension Z-scheme with a redox shuttle, the particulate sheet Z-scheme system is more like a miniaturized and parallel p/n photoelectrochemical cell. In this review, we summarize the optimization strategies for a powder suspension Z-scheme with a redox shuttle and particulate sheet Z-scheme. In particular, attention has been focused on choosing appropriate redox shuttle and electron mediator, facilitating the redox shuttle cycle, avoiding redox mediator-induced side reactions, and constructing a particulate sheet. Challenges and prospects in the development of efficient Z-scheme overall water splitting are also briefly discussed.

摘要

实现太阳光驱动的光催化全分解水是解决能源和环境问题的理想终极目标。光催化Z型全分解水近年来取得了长足发展;具体方法包括带有氧化还原穿梭体的粉末悬浮Z型体系和颗粒片层Z型体系。其中,颗粒片层已实现超过1.1%的基准太阳能制氢效率。然而,由于组件、结构、运行环境和电荷转移机制的内在差异,粉末悬浮体系和颗粒片层Z型体系的优化策略存在若干不同之处。与带有氧化还原穿梭体的粉末悬浮Z型体系不同,颗粒片层Z型体系更像是一个小型化的平行p/n光电化学电池。在本综述中,我们总结了带有氧化还原穿梭体的粉末悬浮Z型体系和颗粒片层Z型体系的优化策略。特别关注了选择合适的氧化还原穿梭体和电子介质、促进氧化还原穿梭体循环、避免氧化还原介质引发的副反应以及构建颗粒片层。还简要讨论了高效Z型全分解水发展中的挑战和前景。

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