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- W3185212912 abstract "In this study, Z-scheme Zn doped Fe2O3/ZnIn2S4 (Zn-Fe2O3/ZnIn2S4) heterojunction with improved spatial charge separation ability was successfully fabricated through solvothermal method. The obtained samples exhibited improved photocatalytic degradation performance containing ciprofloxacin (CIP) as simulated pollutant. The excellent photoactivity could be attributed to the tight contact between Zn-Fe2O3 nanocubes and ZnIn2S4 microflowers to form the interfaces which is convenient for charge transfer. Otherwise, the matched band gap structure of Zn-Fe2O3 and ZnIn2S4 could be the driving force of effective separation and transfer of photo-excited electron-hole pairs. The study of the photocatalytic mechanism demonstrates that the charge transfer path on Zn-Fe2O3/ZnIn2S4 architectures conforms to the Z-scheme route. We hope this research could provide new ideas for the feasible design of Z-scheme heterojunction with high-performance in the field of photocatalysis." @default.
- W3185212912 created "2021-08-02" @default.
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- W3185212912 date "2021-11-01" @default.
- W3185212912 modified "2023-10-18" @default.
- W3185212912 title "The improved spatial charge separation and antibiotic removal performance on Z-scheme Zn-Fe2O3/ZnIn2S4 architectures" @default.
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- W3185212912 doi "https://doi.org/10.1016/j.colsurfa.2021.127226" @default.
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