In situ growth of CuS nanoparticles on g-C3N4 nanosheets for H2 production and the degradation of organic pollutant under visible-light irradiation

被引:21
|
作者
Xu, Zhenhe [1 ]
Xu, Baotong [1 ]
Qian, Kun [1 ]
Li, Zheng [1 ]
Ding, Fu [1 ]
Fan, Miaomiao [2 ]
Sun, Yaguang [1 ]
Gao, Yu [1 ]
机构
[1] Shenyang Univ Chem Technol, Key Lab Inorgan Mol Based Chem Liaoning Prov, Coll Appl Chem, Shenyang 110142, Liaoning, Peoples R China
[2] Liaoyang Inst Drug Control, Liaoyang 111000, Peoples R China
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
PHOTOCATALYTIC HYDROGEN GENERATION; UP-CONVERSION; PERFORMANCE; FABRICATION; EVOLUTION; WATER;
D O I
10.1039/c9ra03532j
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The solar-to-fuel conversion using a photocatalyst is an ideal method to solve the energy crisis and global warming. In this contribution, photocatalytic H-2 production and organic pollutant removal using g-C3N4/CuS composite was demonstrated. Well dispersed CuS nanoparticles (NPs) with a size of about 10 nm were successfully grown on the surface of g-C3N4 nanosheet via a facile hydrothermal method. The as-prepared g-C3N4/CuS nanocomposite at an optimized loading exhibited a much higher visible light photoactivity, giving up to 2.7 times and 1.5 times enhancements in comparison to pure g-C3N4 for photocatalytic H-2 production and methylene orange (MO) degradation, respectively. These enhanced photocatalytic activities are attributed to the interfacial transfer of photogenerated electrons and holes between g-C3N4 and CuS, which leads to effective charge separation on both parts. That is, under the visible light irradiation, electrons in the valence band (VB) of g-C3N4 can directly transfer to the CuS NPs, which can act as an electron sink and co-catalyst to promote the separation and transfer of photo-generated electrons, thus significantly improving the photocatalytic efficiency.
引用
收藏
页码:25638 / 25646
页数:9
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