) heterostructures were successfully fabricated. The photodegradation properties of organic dyes were explored in detail under visible light. The photocatalytic results demonstrate that the CuO/MoS
2
-3 heterostructure delivers superior degradation rates towards methyl violet dye (MV) and rhodamine B (RhB)
reaching 99.8% and 95.3% within 30 min
respectively. The decent photodegradation activity is due to improved visible light adsorption and faster transfer of electron-hole pairs. The radical trapping experiments show that superoxide radicals (·O
2
-
) and holes (h
+
) are the main active species in the removal of MV. Furthermore
the CuO/MoS
2
-3 composite possesses the prominent stability and recyclability. This work offers a highly sustainable technique for designing a high-efficiency photocatalyst to remove environmental pollutants.
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Dual biomass-derived CQDs/Ag co-catalysts synergistically assisted Cu2O for efficient tetracycline hydrochloride photocatalytic degradation: Performance and mechanism insights
Mechanochemical synthesis of Ag/TiO2@PANI nanocomposites for enhanced toluene photocatalytic degradation under near-ultraviolet light
Pomelo biochar as an electron acceptor to modify graphitic carbon nitride for boosting visible-light-driven photocatalytic degradation of tetracycline
Simultaneous utilization of electro-generated O2 and H2 for H2O2 production: An upgrade of the Pd-catalytic electro-Fenton process for pollutants degradation
Modified g-C3N4 derived from ionic liquid and urea for promoting visible-light photodegradation of organic pollutants
相关作者
Xiaoming Li
Ming Yan
Qi Yang
Hai Guo
Yuqi Li
You Wu
Ying Mo
Qiulian Zhu
相关机构
School of Resources and Environment, Hunan Provincial Key Laboratory of Carbon Neutrality and Intelligent Energy, Hunan University of Technology and Business
College of Environmental Science and Engineering, Hunan University
Innovation Team of Air Pollution Control, Institute of Catalytic Reaction Engineering, College of Chemical Engineering, Zhejiang University of Technology
Department of Chemical and Biochemical Engineering, College of Chemistry and Chemical Engineering, Key Laboratory for Chemical Biology of Fujian Province, Xiamen University
School of Material Science and Engineering, Beihua University