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Updated: Jun 29, 2026

Simple Methods for the Preparation of Non-noble Metal Bulk-electrodes for Electrocatalytic Applications
Published on: June 21, 2017
Nanoflower Balls Loaded with Nonprecious Metals Efficient Resist Photocorrosion for Photocatalytic Hydrogen Evolution
Bolin Yang1, Fei Jin1, Zhiliang Jin1
1School of Chemistry and Chemical Engineering, Ningxia Key Laboratory of Solar Chemical Conversion Technology, Key Laboratory for Chemical Engineering and Technology, State Ethnic Affairs Commission, North Minzu University, Yinchuan, 750021, P. R. China.
Abstract:
The production of hydrogen via solar driven photocatalytic water splitting represents a promising pathway to green energy. In this study, the promising bimetallic sulfide Zn2In2S5 is chosen to break through its inherent performance limitations. Loading the cocatalyst NiMoS4 encapsulated by nanoflower spheres of Zn2In2S5 has the property of significantly inhibiting photocorrosion. The hydrogen evolution rate of the NiMoS4/ Zn2In2S5 composite under simulated sunlight is 5.64 mmol g-1 h-1, which is three times higher than that of the main catalyst Zn2In2S5. It is derived from physical phase analytical characterization, photoelectrochemical characterization and density functional theory computational simulation, confirming that the introduction of the NiMoS4 cocatalyst is a key factor in enhancing the efficiency of the hydrogen evolution reaction by promoting the electron enrichment effect and increasing the catalytically active sites. It is aimed to synergistically enhance the photogenerated carrier separation efficiency and facilitate the conversion of solar energy into chemical energy, providing inspiration for developing efficient and stable photocatalyst systems.
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