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Fabrication, characterization and photocatalytic activity of g-C3N4 coupled with FeVO4 nanorods
被引:37
|作者:
Nong, Qingyan
[1
]
Cui, Min
[1
]
Lin, Hongjun
[3
]
Zhao, Leihong
[2
]
He, Yiming
[1
]
机构:
[1] Zhejiang Normal Univ, Dept Mat Sci, Jinhua 321004, Peoples R China
[2] Zhejiang Normal Univ, Inst Phys Chem, Jinhua 321004, Peoples R China
[3] Zhejiang Normal Univ, Coll Geog & Environm Sci, Jinhua 321004, Peoples R China
来源:
RSC ADVANCES
|
2015年
/
5卷
/
35期
关键词:
VISIBLE-LIGHT IRRADIATION;
GRAPHITIC CARBON NITRIDE;
REACTABLE IONIC LIQUID;
DEGRADATION;
COMPOSITES;
WATER;
C3N4;
ENHANCEMENT;
PERFORMANCE;
NANOWIRES;
D O I:
10.1039/c5ra01484k
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
A novel FeVO4/g-C3N4 composite photocatalyst was synthesized via a simple mixing-calcination method and characterized by various techniques including the Brunauer-Emmett-Teller method, X-ray diffraction, scanning electron microscopy, transmission electron microscopy, X-ray photoelectron spectroscopy, UV-vis diffuse reflectance spectroscopy, photoluminescence spectroscopy, and an electrochemical method. The photocatalytic activity was evaluated by degradation of rhodamine B (RhB). Results indicated that the FeVO4/g-C3N4 composite exhibited a much higher photocatalytic activity than pure g-C3N4 under visible light illumination. The rate constant of RhB degradation for the optimal FeVO4/g-C3N4 composite (5.0% FeVO4/g-C3N4) is approximately 2.2 times that of pure g-C3N4. The formation of a heterojunction structure between FeVO4 and g-C3N4 which efficiently promoted the separation of electron-hole pairs was believed to be the origin of the enhanced photoactivity.
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页码:27933 / 27939
页数:7
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