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One step solid-state reaction synthesis, characterization, and catalytic performance of n–p SnO2/Bi2O3 composite

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A novel n–p SnO2/Bi2O3 composite was synthesized by template free one step solid-state reaction synthesis. The as-prepared composite was characterized by XRD, HR-TEM, FE-SEM, UV–Vis, PL, and XPS. The photocatalytic… Click to show full abstract

A novel n–p SnO2/Bi2O3 composite was synthesized by template free one step solid-state reaction synthesis. The as-prepared composite was characterized by XRD, HR-TEM, FE-SEM, UV–Vis, PL, and XPS. The photocatalytic capacity of n–p SnO2/Bi2O3 was evaluated by monitoring the decolorization of Rh.B solution. The results indicate that: (1) The photocatalyst exhibited a unique flake-like powder structure. SnO2 particles closely scattered on the surface of nano-flake structure of Bi2O3; (2) Compared with pure SnO2 and Bi2O3, all the composite samples extended the edge of absorbance to visible light region as long as 520 nm(sample S500) ; (3) The composite calcined at 500 ℃(sample S500) showed the highest separation capability of photo electrons and holes; (4) About 99% Rh.B can be completely decolorized within 30 min, and the reaction rate constant of S500 is about 10 times higher than that of pure SnO2 and Bi2O3; (5) The decolorization ratio was as high as 95% even in the 5th cycle which means the SnO2/Bi2O3 composite is chemically stable; (6)Active species test showed that (·O2−), holes (h+) were the main active species during the decoloration of the Rh.B solution.

Keywords: sno2; sno2 bi2o3; one step; reaction; bi2o3 composite

Journal Title: Journal of Materials Science: Materials in Electronics
Year Published: 2018

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