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- W4362717728 endingPage "6048" @default.
- W4362717728 startingPage "6036" @default.
- W4362717728 abstract "The photocatalytic CO2 reduction technology can effectively decrease the CO2 content in air while converting CO2 into high-value-added chemicals and turning waste into treasure. In this study, Cu2O with a concave cubic structure was fabricated by selective etching, and ZnIn2S4 nanosheets were successfully loaded on it uniformly, which significantly elevated its catalytic activity. The maximum CO yield of 9.98 μmol/g/h was obtained on the Z-scheme ZIS/Cu2O-0.3 photocatalyst, which was 3.7 and 4.3 times as high as the bare Cu2O concave cube and ZnIn2S4, respectively. The excellent photocatalytic performance could be attributed to the construction of Z-scheme heterojunction which facilitated the efficient separation of electron–hole pairs, a large specific surface area that provided an abundance of reactive sites, and positive visible light response." @default.
- W4362717728 created "2023-04-09" @default.
- W4362717728 creator A5002339042 @default.
- W4362717728 creator A5018892762 @default.
- W4362717728 creator A5021033619 @default.
- W4362717728 creator A5028462736 @default.
- W4362717728 creator A5053354337 @default.
- W4362717728 creator A5089481275 @default.
- W4362717728 date "2023-04-08" @default.
- W4362717728 modified "2023-09-25" @default.
- W4362717728 title "Fabrication of a Concave Cubic Z-Scheme ZnIn<sub>2</sub>S<sub>4</sub>/Cu<sub>2</sub>O Heterojunction with Superior Light-Driven CO<sub>2</sub> Reduction Performance" @default.
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