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Direct Z-scheme hierarchical WO_3/BiOBr with enhanced photocatalytic degradation performance under visible light

机译:直接Z-Scheme等级WO_3 / BIOBR,具有增强的光催化降解性能下可见光

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摘要

A visible light-driven 3D hierarchical photocatalyst WO3/BiOBr (WB) was prepared by solvothermal method, through which 2D BiOBr ultra-thin nanosheets grew on 1D WO3 nanotube bundles. The as-prepared WB-0.5 (i.e. W:Bi with a mole ratio of 0.5:1) had the highest photocatalytic degradation efficiency of 94.7% for ciprofloxacin hydrochloride under visible light irradiation (lambda 400 nm) within 120 min; such efficiency was about 5.2 and 1.6 times higher than that of individual WO3 and BiOBr, respectively. Its removal rate of total organic carbon was 41.2%. Moreover, WB-0.5 showed high reusability and photostability, and its photocatalytic activity did not show any obvious decrease even after five cycles. The characterisation of WB-0.5's crystal structure, morphology, and surface elemental state confirmed its 3D hierarchical structure and formation of heterojunction. Its direct Z-scheme system was tested by analysing the active species, photocurrent characteristics, Mott-Schottky plots, UV-vis diffuse reflection spectroscopy and in situ irradiation XPS. The 3D hierarchical structure may provide increased active sites and enhanced light absorption efficiency. The direct Z-scheme configuration is particularly beneficial for improving photocatalytic activity. Therefore, this work may provide a feasible strategy for designing a Z-scheme 3D hierarchical photocatalyst.
机译:可见光驱动的3D层次光催化剂WO3 / BIOBR(WB)通过溶剂质方法制备,通过其中2D BioBR超薄纳米蛋白酶在1D WO3纳米管束上增长。在120分钟内的可见光照射(Lambda> 400nm)下的热催化降解效率最高的光催化降解效率为94.7%的最高光催化降解效率为94.7%;这种效率分别比单个WO3和BIOBR高约5.2%和1.6倍。其总有机碳的去除率为41.2%。此外,WB-0.5显示出高可重用性和光稳定性,即使在五个循环之后,其光催化活性也没有显示出任何明显的降低。 WB-0.5的晶体结构,形态和表面元素状态的表征证实了其3D层次结构和异质结的形成。通过分析活性物种,光电流,Mott-Schottky绘图,UV-VI扩散反射光谱和原位照射XP来测试其直接Z-Scheme System。 3D层次结构可以提供增加的有源网站和增强的光吸收效率。直接Z方案配置对于改善光催化活性特别有益。因此,这项工作可以提供用于设计Z方案3D层次光催化剂的可行策略。

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