Issue 21, 2022

Robust photocatalytic activity of two-dimensional h-BN/Bi2O3 heterostructure quantum sheets

Abstract

Herein, defect intrinsic hexagonal boron nitride (h-BN) quantum sheets (QS) and bismuth oxide (Bi2O3) QS were prepared from bulk materials by ball milling and solvent stripping, respectively. The h-BN/Bi2O3 heterostructure was fabricated via a facile self-assembly method. The structure and performance of samples were systematically characterized. As expected, the layered h-BN QS is tightly coated on the surface of Bi2O3 QS in a face-to-face stacking structure and interconnected by strong interface interactions. The introduction of h-BN QS can significantly enhance the separation efficiency of the photogenerated carriers of h-BN/Bi2O3. The experimental results show that the photocatalytic activity of h-BN/Bi2O3 is markedly improved. The first-order reaction rate constant of the 3wt%-BN/Bi2O3 sample is 3.2 × 10−2 min−1, about 4.5 times that of Bi2O3 QS. By means of the active species capture test, it is found that the main oxidation species are holes (h+), followed by hydroxyl radicals (˙OH). Based on the surface charge transfer characteristics, the photogenerated carrier transfer and separation efficiency can be improved by coupling h-BN and a Bi2O3 semiconductor to the Schottky heterojunction, and the strong interaction between heterogeneous interfaces also enhances the surface catalytic reaction efficiency, which improves dramatically the photocatalytic performance.

Graphical abstract: Robust photocatalytic activity of two-dimensional h-BN/Bi2O3 heterostructure quantum sheets

Supplementary files

Article information

Article type
Paper
Submitted
15 Mar 2022
Accepted
27 Apr 2022
First published
04 May 2022
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2022,12, 13535-13547

Robust photocatalytic activity of two-dimensional h-BN/Bi2O3 heterostructure quantum sheets

J. Zhou, F. Duo, C. Wang, L. Chu, M. Zhang and D. Yan, RSC Adv., 2022, 12, 13535 DOI: 10.1039/D2RA02115C

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