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- W4300772309 endingPage "130298" @default.
- W4300772309 startingPage "130298" @default.
- W4300772309 abstract "Pristine Ag3PO4 is arousing considerable interests in the field of photocatalysis, but its stability and photocatalytic performance are still facing great challenges. Here, an efficient and ambient-stable C-ZnO/Ag3PO4 composite with various C-ZnO ratios was innovatively designed for environmental governance via visible light catalytic degradation of ciprofloxacin (CIP). The present study significantly enhanced the spatial charge separation capability by constructing the S-scheme structure between C-ZnO and Ag3PO4, as well as addressed the photocorrosion and stability issues of Ag3PO4 by anchoring nanoscale C-ZnO nanosheet. As a result, the photocatalysts were successfully fabricated via the green grinding method and were synergistically characterized using different technologies. Remarkably, the optimal mass proportion of C-ZnO in as-prepared composite was 30%, and the supreme rate constant of CIP degradation was 0.04811 min−1, which was 11.7 and 2.8 times that of C-ZnO and Ag3PO4, respectively. The preset work can not only offer several insights into resolving the undesirable photocatalytic performance and stability of Ag3PO4, but also offer the design of other novel p-type Ag3PO4-based composites for multifarious applications in environmental remediation." @default.
- W4300772309 created "2022-10-04" @default.
- W4300772309 creator A5071037763 @default.
- W4300772309 creator A5077705529 @default.
- W4300772309 date "2022-12-01" @default.
- W4300772309 modified "2023-10-14" @default.
- W4300772309 title "Green synthesis of stable S-scheme C-ZnO nanosheet/Ag3PO4 heterostructure towards extremely efficient visible-light catalytic degradation of ciprofloxacin" @default.
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- W4300772309 doi "https://doi.org/10.1016/j.colsurfa.2022.130298" @default.
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