光催化
纳米技术
制氢
材料科学
氧化物
清洁能源
太阳能
过渡金属
析氧
能量转换
太阳能转换
氢
催化作用
环境科学
化学
工程类
物理
冶金
电化学
生物化学
环境保护
有机化学
电极
物理化学
电气工程
热力学
作者
Mohammad Ziaur Rahman,Fazal Raziq,Huabin Zhang,Jorge Gascón
标识
DOI:10.1002/ange.202305385
摘要
Abstract Transition metal oxides (TMOs) were one of the first photocatalysts used to produce hydrogen from water using solar energy. Despite the emergence of many other genres of photocatalysts over the years, TMO photocatalysts remain dominant due to their easy synthesis and unique physicochemical properties. Various strategies have been developed to enhance the photocatalytic activity of TMOs, but the solar‐to‐hydrogen (STH) conversion efficiency of TMO photocatalysts is still very low (<2 %), which is far below the targeted STH of 10 % for commercial viability. This article provides a comprehensive analysis of several widely used strategies, including oxygen defects control, doping, establishing interfacial junctions, and phase‐facet‐morphology engineering, that have been adopted to improve TMO photocatalysts. By critically evaluating these strategies and providing a roadmap for future research directions, this article serves as a valuable resource for researchers, students, and professionals seeking to develop efficient energy materials for green energy solutions.
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