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首页> 外文期刊>Journal of Colloid and Interface Science >Intimate contacted two-dimensional/zero-dimensional composite of bismuth titanate nanosheets supported ultrafine bismuth oxychloride nanoparticles for enhanced antibiotic residue degradation
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Intimate contacted two-dimensional/zero-dimensional composite of bismuth titanate nanosheets supported ultrafine bismuth oxychloride nanoparticles for enhanced antibiotic residue degradation

机译:钛酸铋纳米片的亲密接触二维/零尺寸复合物支持超细铋纳米甲基氧化铋用于增强的抗生素残留物降解

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摘要

Constructing a two-dimensional/zero-dimensional (2D/0D) composite with matched crystal structure, suitable energy band structure as well as intimate contact interface is an effective way to improve carriers separation for achieving highly photocatalytic performance. In this work, a novel bismuth titanate/bismuth oxychloride (Bi4Ti3O12/BiOCl) composite consisting of 2D Bi4Ti3O12 nanosheets and OD BiOCl nanoparticles was constructed for the first time. Germinating ultrafine BiOCl nanoparticles on Bi4Ti3O12 nanosheets can provide abundant contact interface and shorten migration distance of photoinduced carriers via two-step synthesis contained molten salt process and facile chemical transformation process. The obtained Bi4Ti3O12/BiOCl 2D/0D composites exhibited enhanced photocatalytic performance for antibiotic tetracycline hydrochloride degradation. The rate constant of optimal Bi4Ti3O12/BiOCl composite was about 4.4 times higher than that of bare Bi4Ti3O12 although Bi4Ti3O12/BiOCl composite appeared lesser photoabsorption. The enhanced photocatalytic performance can be mainly ascribed to matched crystal structure, suitable energy band structure and intimate contact interface between Bi4Ti3O12 nanosheets and ultrafine BiOCl nanoparticles as well as unique 2D/0D composite structure. Besides, a probable degradation mechanism on the basis of active species trapping experiments, electrochemical impedance spectroscopy, photocurrent responses and energy band structures was proposed. This work may be stretched to other 2D/0D composite photocatalysts construction, which is inspiring for antibiotic residue treatment. (C) 2018 Elsevier Inc. All rights reserved.
机译:用匹配的晶体结构构建二维/零维(2D / 0d)复合材料,合适的能带结构以及亲密接触界面是改善载流子分离以实现高光催化性能的有效方法。在这项工作中,首次构建由2D Bi4Ti3O12纳米片和OD BioCl纳米粒子组成的新型钛酸钛/铋/铋(Bi4Ti3O12 / BioCl)复合材料。在Bi4Ti3O12纳米片上发芽超细Biocl纳米颗粒可以提供丰富的接触界面,并通过两步合成缩短光诱导载体的迁移距离含有熔盐工艺和容易化学转化过程。所获得的BI4TI3O12 / BIOCL 2D / 0D复合材料表现出增强的光催化性能,用于抗生素四环素盐酸盐降解。尽管Bi4Ti3O12 / BioCl复合材料出现较低的光吸收,但最佳Bi4Ti3O12 / BioCl复合材料的速率常数比裸Bi4Ti3O12高约4.4倍。增强的光催化性能可以主要归因于匹配的晶体结构,合适的能带结构和Bi4Ti3O12纳米片和超细BioCl纳米颗粒以及独特的2D / 0D复合结构之间的私密接触界面。此外,提出了一种基于活性物质捕获实验,电化学阻抗光谱,光电流响应和能带结构的可能降解机制。该作品可以拉伸到其他2D / 0D复合光催化剂结构,这是鼓舞人令的抗生素残留处理。 (c)2018 Elsevier Inc.保留所有权利。

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