Synthesis, characterization, and photocatalytic activity of multicomponent CdMoO4/g-C3N4/GO composite

被引:8
|
作者
Van Duc, Hoang [1 ]
Thu, Nguyen Thi Anh [1 ]
Cam, Do Thi Ngoc [1 ]
Luyen, Nguyen Dinh [1 ]
Linh, Nguyen Le My [1 ]
Nhung, Nguyen Thi Ai [2 ]
Nhiem, Dao Ngoc [3 ]
Khieu, Dinh Quang [2 ]
机构
[1] Hue Univ, Univ Educ, Vinh Ninh 530000, Thien Hue, Vietnam
[2] Univ Sci, Hue Univ, Vinh Ninh 530000, Thien Hue, Vietnam
[3] Inst Mat Sci VAST, Hanoi 100000, Vietnam
关键词
CdMoO4; GO; Photocatalyst; RhB; Visible Light; RHODAMINE-B DEGRADATION; VISIBLE-LIGHT; GRAPHENE-OXIDE; CDMOO4; MICROSPHERES; METHYLENE-BLUE; PERFORMANCE; CARBON; WATER; FABRICATION; DYE;
D O I
10.4491/eer.2022.649
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
CdMoO4/g-C3N4/GO composites were first synthesized by a hydrothermal process for the photocatalytic degradation of rhodamine B (RhB) under visible light illumination. The findings show that CdMoO4 is highly dispersed onto g-C3N4 and graphene oxide (GO) sheets. The surface area of the composite increased 27-30.5 times that of CdMoO4, and its band gap energy decreased by about 1.26 times. These features significantly improve the photocatalytic activity of the composite in the RhB decomposition reaction under visible light. The RhB degradation efficiency of the CdMoO4/g-C3N4/GO composite is 5.7, 1.36, and 1.65 times that of CdMoO4, CdMoO4/g-C3N4, and CdMoO4/GO composites, respectively. The active species trapping experiments show that the main forms in RhB degradation are & BULL;O2-, & BULL;OH, and h+. The stability of the photocatalyst is retained even after the 5th reuse. In addition, RhB degradation products were identified with the high-performance liquid chromatography-mass spectrometry method, and the pathway of photocatalytic degradation was also addressed.
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页数:13
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