Co-exposed crystal facets optimizing photocatalytic activity and photosensitization ability: A case of facile, fast and scalable synthesis of BiOBr round nanosheets

材料科学 光催化 降级(电信) 化学工程 双酚A 纳米技术 吸附 二极管 光化学 光电子学 催化作用 复合材料 化学 有机化学 环氧树脂 计算机科学 电信 工程类
作者
Yuxi Guo,Tao Zhong,Jiajun Ruan,Hao Wen
出处
期刊:Colloids and Surfaces A: Physicochemical and Engineering Aspects [Elsevier BV]
卷期号:654: 130049-130049 被引量:6
标识
DOI:10.1016/j.colsurfa.2022.130049
摘要

BiOBr round nanosheets were obtained by a facile, fast and scalable synthesis methodology in ambient conditions. The as-prepared sheet-shaped three-dimensional nanostructured BiOBr exposes reactive {001} surface facets, as well as {110} and {200} lateral facets. The average diameter is only 80-100 nm, and the thickness ~20 nm. BiOBr not only exhibits excellent photocatalytic activity in degradation of Bisphenol A, outperforming hydrothermally synthesized BiOBr and other important visible-light-responsive photocatalysts such as BiOI, Bi 2 WO 6 , BiVO 4 , P25, g-C 3 N 4 or Cu 2 (OH)PO 4 , it also possesses extraordinary activity in degradation of photoexcited dye molecules. A high reactive {001} facets exposure is demonstrated beneficial for photocatalytic activity in degradation of Bisphenol A. At the same time, the exposure of {110} and {200} facets also benefits photo-excited dye degradation ability, which is likely related to favorable adsorption on sites associated with these facets. The co-exposed facets optimizing for multi-properties endow the easily obtained BiOBr nanocrystals potential application in dye-sensitized solar cells, light-emitting diodes, or optoelectronic devices. Also, we believe our finding improve the ability of creating advanced nanosized structures for multifunctional devices. Nanostructured round BiOBr with exposed reactive {001} surface facets, as well as {110} and {200} lateral facets have been synthesized by a facile, fast and scalable route. Due to the crystal facets optimization, it exhibits excellent photocatalytic activity and super photosensitization ability than hydrothermally synthesized BiOBr and other important visible-light-responsive photocatalysts.
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