光催化
磷化物
材料科学
纳米片
载流子
半导体
化学工程
纳米技术
金属
光电子学
催化作用
冶金
化学
生物化学
工程类
作者
Song Liu,Jen‐Wei Huang,Haiwei Su,Guogang Tang,Qinqin Liu,Jingfang Sun,Jing Xu
标识
DOI:10.1016/j.ceramint.2020.08.265
摘要
Constructing appropriate cocatalysts to modify semiconductors is significant for improving photocatalytic H2 production and stability. Transition metal phosphides (TMPs) with low-cost and high efficiency have been considered as one of the most promising non-noble-metal cocatalysts. Herein, a novel multiphase phosphide nanosheet, Fe2P/Ni3P cocatalyst, was target designed and in-situ incorporated with Cu2O nanocubes via a phosphorization method for photocatalytic H2 evolution under visible light irradiation. The optimal Cu2O/Fe2P/Ni3P sample provided 10-folds higher photocatalytic activity of H2 evolution rate (108.68 μmol g−1 h−1) than that of single Cu2O (18.6 μmol g−1 h−1), which could be ascribed to fast charge transfer from the Cu2O to multiphase phosphide Fe2P/Ni3P cocatalyst and efficient separation of the light-induced charge carriers. Moreover, the Fe2P/Ni3P cocatalyst also improved the photo-corrosion of Cu2O caused by the disproportionation reaction, leading the Cu2O/Fe2P/Ni3P hybrid possessed robust stability. Additionally, this work guarantees useful insights in employing novel TMPs-based cocatalysts to construct visible-light-responsive photocatalysts, which manifests promising applications in the dwindling supply of energy.
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