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Facile layer-by-layer self-assembly of 2D perovskite niobate and layered double hydroxide nanosheets for enhanced photocatalytic oxygen generation
Affiliation:1. International Research Center for Renewable Energy, State Key Laboratory of Multiphase Flow in Power Engineering, Xi''an Jiaotong University, Xi''an, Shaanxi, 710049, China;2. Center for Applied Chemistry, University of Electronic Science and Technology of China, Chengdu, Sichuan, 610000, China;3. Chemical Research Department, Xi''an Thermal Power Research Institute Co. Ltd., 99 Yanxiang Road, Xi''an, Shaanxi, 710069, China
Abstract:Photocatalytic O2-generation reaction is recognized as a crucial step in water splitting and has drawn great attention of researchers. In this work, a hetero-layered composite photocatalyst was successfully prepared by a facile self-assembly method based on electrostatic interaction between oppositely charged Zn/Cr-layered double hydroxide (Zn/Cr-LDH) and lead niobate nanosheets. The layer-by-layer stacking of Zn/Cr-LDH and HPb2Nb3O10 nanosheets was beneficial for rapid migration of photo-induced charge carriers inside the photocatalyst because of large contact area. In the meantime, Zn/Cr-LDH and HPb2Nb3O10 components exhibited suitable energy-band alignment, which led to efficient separation of photo-induced charge carriers. The composite photocatalyst showed enhanced photocatalytic O2-generation activity under visible-light irradiation without loading cocatalyst. Briefly, this work expanded the applications of AB2Nb3O10-based materials in photocatalytic energy conversion and proved that constructing composites based on electrostatic self-assembly of complementary 2D materials is a promising strategy for development of more efficient photocatalysts.
Keywords:Photocatalysis  Niobate  Layered double hydroxide  Self-assembly  Oxygen generation
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