Optical and Electrical Modulation Strategies of Photoelectrodes for Photoelectrochemical Water Splitting

材料科学 光电子学 分解水 调制(音乐) 光电化学电池 电极 化学 电解质 物理 光催化 声学 生物化学 物理化学 催化作用
作者
Xianhong He,Wei Tian,Lin Yang,Zhengyu Bai,Liang Li
出处
期刊:Small methods [Wiley]
卷期号:8 (2) 被引量:12
标识
DOI:10.1002/smtd.202300350
摘要

Abstract When constructing efficient, cost‐effective, and stable photoelectrodes for photoelectrochemical (PEC) systems, the solar‐driven photo‐to‐chemical conversion efficiency of semiconductors is limited by several factors, including the surface catalytic activity, light absorption range, carrier separation, and transfer efficiency. Accordingly, various modulation strategies, such as modifying the light propagation behavior and regulating the absorption range of incident light based on optics and constructing and regulating the built‐in electric field of semiconductors based on carrier behaviors in semiconductors, are implemented to improve the PEC performance. Herein, the mechanism and research advancements of optical and electrical modulation strategies for photoelectrodes are reviewed. First, parameters and methods for characterizing the performance and mechanism of photoelectrodes are introduced to reveal the principle and significance of modulation strategies. Then, plasmon and photonic crystal structures and mechanisms are summarized from the perspective of controlling the propagation behavior of incident light. Subsequently, the design of an electrical polarization material, polar surface, and heterojunction structure is elaborated to construct an internal electric field, which serves as the driving force to facilitate the separation and transfer of photogenerated electron–hole pairs. Finally, the challenges and opportunities for developing optical and electrical modulation strategies for photoelectrodes are discussed.
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