Dye-Sensitized NiSx Catalyst Decorated on Graphene for Highly Efficient Reduction of Water to Hydrogen under Visible Light Irradiation
Chao Kong, Shixiong Min, Gongxuan Lü
Lanzhou Institute of Chemical Physics University of Chinese Academy of Sciences
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In this work, a highly active H 2 evolution NiS x catalyst decorated on graphene (NiS x /G) nanohybrid was prepared by an in situ chemical deposition method, in which nickel ion was first adsorbed onto graphene and subsequently reacted with sulfide ion to yield the NiS x /G nanohybrid. The NiS x /G catalyst exhibited activity for hydrogen generation 2-fold higher than that of pristine NiS x under visible light irradiation. The highest quantum efficiency of 32.5% was reached at 430 nm when Eosin Y was used as a photosensitizer. In this system, graphene not only provided a large area and two-dimensional substrate for the confined growth of NiS x but also greatly enhanced the transfer of photoelectrons from excited Eosin Y to the NiS x cocatalyst because of its promotion of charge separation, leading to the great enhancement of photocatalytic hydrogen evolution.
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工程Advanced Photocatalysis Techniques
Electrocatalysts for Energy Conversion · Copper-based nanomaterials and applications
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