分解水
光电化学
光电化学电池
光电子学
材料科学
光催化
化学
电化学
催化作用
物理化学
电极
生物化学
电解质
作者
Qinghua Yi,Hao Wang,Jong‐Min Lee
标识
DOI:10.1002/celc.202400600
摘要
Abstract Photoelectrochemical water splitting is one of the most promising and appealing strategies for converting sunlight into sustainable hydrogen energy and has received increasing attention. Among the potential photocatalysts, BiVO 4 has attracted particular attention as a photoanode material because of its appropriate bandgap (2.4 eV) and favorable band‐edge position. Moreover, its carrier mobility and hole‐diffusion length are modest, and the photocurrent density is below the theoretical expectation (7.5 mA cm −2 ). Recently, diverse strategies have been developed to improve the performance of BiVO 4 ‐based photoanodes with rapid progress. In this article, engineering strategies including facet tailoring, intrinsic and extrinsic doping, surface modification, are summarized, and remaining challenges and perspective for the future research are provided.
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