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离子液体自燃烧法合成具有优异可见光光催化性能的BiOBr/Bi24O31Br10异质结

Ionic liquid self-combustion synthesis of BiOBr/Bi24O31Br10 heterojunctions with exceptional visible-light photocatalytic performances.

作者信息

Li Fa-tang, Wang Qing, Ran Jingrun, Hao Ying-juan, Wang Xiao-jing, Zhao Dishun, Qiao Shi Zhang

机构信息

College of Science, Hebei University of Science and Technology, Shijiazhuang 050018, China.

出版信息

Nanoscale. 2015 Jan 21;7(3):1116-26. doi: 10.1039/c4nr05451b.

Abstract

Heterostructured BiOBr/Bi24O31Br10 nanocomposites with surface oxygen vacancies are constructed by a facile in situ route of one-step self-combustion of ionic liquids. The compositions can be easily controlled by simply adjusting the fuel ratio of urea and 2-bromoethylamine hydrobromide (BTH). BTH serves not only as a fuel, but also as a complexing agent for ionic liquids and a reactant to supply the Br element. The heterojunctions show remarkable adsorptive ability for both the cationic dye of rhodamine B (RhB) and the anionic dye of methylene orange (MO) at high concentrations, which is attributed to the abundant surface oxygen vacancies. The sample containing 75.2% BiOBr and 24.8% Bi24O31Br10 exhibits the highest photocatalytic activity. Its reaction rate constant is 4.0 and 9.0 times that of pure BiOBr in degrading 50 mg L(-1) of RhB and 30 mg L(-1) of MO under visible-light (λ > 400 nm) irradiation, respectively, which is attributed to the narrow band gap and highly efficient transfer efficiency of charge carriers. Different photocatalytic reaction processes and mechanisms over pure BiOBr and heterojunctions are proposed.

摘要

通过离子液体一步自燃的简便原位路线构建了具有表面氧空位的异质结构BiOBr/Bi24O31Br10纳米复合材料。通过简单调节尿素与氢溴酸2-溴乙胺(BTH)的燃料比,即可轻松控制其组成。BTH不仅作为燃料,还作为离子液体的络合剂和提供Br元素的反应物。该异质结在高浓度下对阳离子染料罗丹明B(RhB)和阴离子染料亚甲基橙(MO)均表现出显著的吸附能力,这归因于丰富的表面氧空位。含有75.2% BiOBr和24.8% Bi24O31Br10的样品表现出最高的光催化活性。在可见光(λ>400 nm)照射下,其降解50 mg L(-1) RhB和30 mg L(-1) MO的反应速率常数分别为纯BiOBr的4.0倍和9.0倍,这归因于其窄带隙和高效的电荷载流子转移效率。提出了纯BiOBr和异质结上不同的光催化反应过程和机理。

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