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Preparation of carnation-like Ag-ZnO composites for enhanced photocatalysis under visible light.
Vu, Anh-Tuan; Mac, Van Hung; Nguyen, Thanh Hung; Nguyen, Thu Huong.
Afiliação
  • Vu AT; School of Chemical Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam.
  • Mac VH; School of Chemical Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam.
  • Nguyen TH; School of Chemical Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam.
  • Nguyen TH; School of Chemical Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam.
Nanotechnology ; 34(27)2023 Apr 21.
Article em En | MEDLINE | ID: mdl-37015211
ABSTRACT
Carnation-like ZnO was synthesized by the facile precipitation method (at room temperature and in 120 min) to decompose dyes in an aqueous medium. The carnation-like ZnO had a stratified porous structure with a size of about 2-3µm, its petals had a smooth surface with a thickness of 5-10 nm and a width of about 300-500 nm. Ag-ZnO composites were synthesized using glucose with the assistance of PVP. The morphology of Ag-ZnO composites was almost unchanged compared to ZnO. Where, the Ag nanoparticles in the size range of 5-15 nm were uniformly dispersed on the ZnO petals, improving the catalytic ability of the composites in tartrazine (TA) degradation. The influence of Ag content on catalytic structure and performance of composite was studied. The 5Ag-ZnO sample had the highest BET surface area and pore volume and the lowest gap energy (Eg) among the as-synthesized samples. The 5Ag-ZnO sample proclaimed the degradation efficiency in 70 min of 97.8% and thekapof 0.031 min-1. The influences of catalyst content, solution pH, and concentration of dye on the photodegradation efficiency of the composite were thoroughly studied. Besides, the photocatalytic activity of the composite was demonstrated by degrading various organic substances and reusability. In addition, it was compared to a metal-semiconductor catalyst of Au-ZnO and semiconductor-semiconductor catalysts of MoS2-ZnO, Cu2O-ZnO, and SiO2-ZnO. The catalytic mechanism under visible light was proposed.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article