材料科学
异质结
复合数
还原(数学)
方案(数学)
光电子学
复合材料
几何学
数学
数学分析
作者
Yuejun Li,Tieping Cao,Dawei Sun
出处
期刊:Journal of Inorganic Materials
[Science Press]
日期:2023-01-01
卷期号:38 (8): 963-963
被引量:2
摘要
One of the basic challenges of CO2 photoreduction is to develop efficient photocatalysts, and the construction of heterostructure photocatalysts with intimate interfaces is an effective strategy to enhance interfacial charge transfer for realizing high photocatalytic activity.Herein, a novel photocatalytic composite, Bi4O5Br2/CeO2 composite fibers (B@C-x) was constructed by embeding CeO2 nanofibers on Bi4O5Br2 nanosheets via an electrospinning combined with hydrothermal method.The composition, morphology and photoelectric properties were characterized by different methods.The results show that Bi4O5Br2/CeO2 heterojunction with appropriate Bi4O5Br2 content can significantly improve the photocatalytic performance of CeO2 nanofibers.Compared with pure Bi4O5Br2 and CeO2, B@C-2 exhibited the best photocatalytic activity under simulation of the sunlight.The Bi4O5Br2/CeO2 exhibited improved photocatalytic CO2 reduction performance with a CO generation rate of 8.26 μmol•h -1 •g -1 without using any sacrificial agents or noble co-catalysts.This can be attributed to the tight interfacial bonding between Bi4O5Br2 and CeO2 and the formation of S-scheme heterojunction, which enables the efficient spatial separation and transfer of photogenerated carriers.This work provides a simple and efficient method for the directional synthesis of Bi-based photocatalytic composites with S-scheme heterojunction and illustrates an applicable tactic to develop potent photocatalysts for clean energy conversion.
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