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- W4328107860 endingPage "102809" @default.
- W4328107860 startingPage "102809" @default.
- W4328107860 abstract "The photocatalytic efficiency towards water pollutant degradation has been limited due to the intermittence of the sunlight, low light utilization and rapid recombination of photoexcited electron-hole pairs. Here a photo-piezoelectric synergistic catalyst of Bi2Fe4O9/Carbon-dots/g-C3N4 heterostructure has been fabricated by loading Bi2Fe4O9 on the Carbon-dots modified g-C3N4 with opened g-C3N4 layer distance, which combined large surface area and photocatalytic activity of Carbon-dots/g-C3N4, and excellent piezoelectric effect of Bi2Fe4O9 for better electron-hole separation efficiency, achieved highly efficient antibiotics and dye degradation even under very weak visible-light treatment and mechanical stress. This heterostructure may fully use wave energy and light irradiation in numerous natural water environmental conditions and enhance the catalytic degradation efficiency, even in cloudy weather or at night when the photocatalytic activity is invalidated." @default.
- W4328107860 created "2023-03-22" @default.
- W4328107860 creator A5025320471 @default.
- W4328107860 creator A5026475770 @default.
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- W4328107860 creator A5069187587 @default.
- W4328107860 creator A5081009375 @default.
- W4328107860 creator A5081145993 @default.
- W4328107860 date "2023-06-01" @default.
- W4328107860 modified "2023-10-15" @default.
- W4328107860 title "Weak visible-light photo-piezoelectric synergistic catalyst based on the Bi2Fe4O9/Carbon-dots/g-C3N4 heterostructure" @default.
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- W4328107860 doi "https://doi.org/10.1016/j.surfin.2023.102809" @default.
- W4328107860 hasPublicationYear "2023" @default.
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