光催化
制氢
分解水
纳米技术
光催化分解水
材料科学
贵金属
过渡金属
生产(经济)
贵金属
氢
催化作用
金属
化学
冶金
有机化学
经济
宏观经济学
生物化学
作者
Yang Yang,Chengyun Zhou,Wenjun Wang,Weiping Xiong,Guangming Zeng,Danlian Huang,Chen Zhang,Biao Song,Wenjing Xue,Xiaopei Li,Ziwei Wang,Donghui He,Hanzhuo Luo,Zenglin Ouyang
标识
DOI:10.1016/j.cej.2020.126547
摘要
Searching a sustainable way to efficiently produce hydrogen (H2) is critical to realizing the “hydrogen economy”, which may resolve the global energy and environmental issues nowadays. The conversion of solar energy to hydrogen energy based on photocatalytic water splitting is an ideal technology for environmental-friendly and economically producing H2. Exploring high-performance and earth-abundant cocatalysts that can replace noble metal-based cocatalysts is essential to achieving highly efficient and cost-effective photocatalytic H2 production. In recent years, transition metal phosphides (TMPs) have been regarded as promising candidates to replace noble metal-based cocatalysts for photocatalytic H2 production. This review presents a panorama of the latest progress in the developments of TMPs for photocatalytic H2 production. Concretely, this review starts with the functions of TMPs in photocatalytic H2 production, followed by the synthetic strategies of TMPs and the loading methods of TMPs on semiconductors. Then the application and mechanism of the common TMPs in photocatalytic H2 production are discussed in detail, including iron phosphides, cobalt phosphides and nickel phosphides. Lastly, we provide a comprehensive conclusion and outlook on the major challenges and opportunities for better developments in the future research. It is reasonable to believe that the TMPs is a rising star in photocatalytic H2 production.
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