Constructing mesoporous g-C3N4/ZnO nanosheets catalyst for enhanced visible-light driven photocatalytic activity

被引:59
|
作者
Yang, Pan [1 ]
Wang, Jingchuan [1 ]
Yue, Guozong [1 ]
Yang, Ruizhu [2 ]
Zhao, Pengxiang [1 ]
Yang, Lijun [1 ]
Zhao, Xiaochong [1 ,2 ]
Astruc, Didier [3 ]
机构
[1] China Acad Engn Phys, Inst Mat, Jiangyou 621908, Peoples R China
[2] Sci & Technol Surface Phys & Chem Lab, Jiangyou 621907, Peoples R China
[3] Univ Bordeaux, ISM, 351 Cours Liberat, F-33405 Talence, France
基金
中国国家自然科学基金;
关键词
g-C3N4; Ethyl cellulose; Mesoporous; Photocatalytic; GRAPHITIC CARBON NITRIDE; Z-SCHEME HETEROJUNCTION; FACILE SYNTHESIS; NANOCOMPOSITES; NANOPARTICLES; PERFORMANCE; FABRICATION; COMPOSITES; ELECTROCATALYSTS; DOTS;
D O I
10.1016/j.jphotochem.2019.112169
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Novel mesoporous graphitic carbon nitride (g-C3N4) was synthesized via one-step thermal condensation of ethyl cellulose (EC) and urea mixture. Morphology, crystal structure and charge carrier lifetime of the composites were controlled by tuning the amount of EC. The optimized 5 wt% EC/g-C3N4 (OEC/g-C3N4), which showed the highest surface area and longest carrier lifetime, were facilely incorporated into the ZnO nanosheet by the hydrothermal method as catalyst for methylene blue degradation under visible-light irradiation. The optimized photocatalytic activity of OEC/g-C3N4/ZnO nanosheets at a weight ratio of 3% under visible-light irradiation is almost 8.5 times higher than that of ZnO nanosheets. This enhancement in performance is mainly attributed to OEC/g-C3N4 incorporation, which broadens the light absorption and facilitates the separation and transfer of photogenerated electron hole pairs at the interface. In addition, this method is expected to be extended to other EC/g-C3N4 loaded materials.
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页数:7
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