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Enhanced Photocatalytic Activity of NaBH4 Reduced BiFeO3 Nanoparticles for Rhodamine B Decolorization

机译:NaBH4还原的BiFeO3纳米粒子对若丹明B脱色的增强的光催化活性

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摘要

In this work, oxygen vacancies were introduced onto the surface of BiFeO3 nanoparticles by NaBH4 reduction method to yield oxygen-deficient BiFeO3−x samples. Comprehensive analysis on the basis of high-resolution transmission electron microscopy (HRTEM) observation and X-ray photoelectron spectrum (XPS) confirms the existence of surface oxygen vacancies on the BiFeO3−x nanoparticles. The photocatalytic activity of as-prepared BiFeO3−x samples was evaluated by the decolorization of rhodamine B (RhB) under simulated sunlight irradiation. The experimental results indicate that the photocatalytic activity of samples is highly related to the NaBH4 reduction time, and the BiFeO3−x sample reduced for 40 min exhibits the highest photocatalytic efficiency, which is much higher than that of pristine BiFeO3 nanoparticles. This can be explained by the fact that the surface oxygen vacancies act as photoinduced charges acceptors and adsorption sites suppress the recombination of photogenerated charges, leading to an increasing availability of photogenerated electrons and holes for photocatalytic reaction. In addition, the obtained BiFeO3−x sample exhibits good photocatalytic reusability.
机译:在这项工作中,通过NaBH4还原法将氧空位引入BiFeO3纳米粒子的表面,以产生缺氧的BiFeO3-x样品。在高分辨率透射电子显微镜(HRTEM)观察和X射线光电子能谱(XPS)的基础上进行的综合分析证实了BiFeO3-x纳米粒子上存在表面氧空位。在模拟的阳光照射下,通过若丹明B(RhB)的脱色评估了制备的BiFeO3-x样品的光催化活性。实验结果表明,样品的光催化活性与NaBH4的还原时间密切相关,还原40min的BiFeO3-x样品表现出最高的光催化效率,远高于原始的BiFeO3纳米颗粒。这可以通过以下事实来解释:表面氧空位充当光致电荷受体,吸附位点抑制光生电荷的复合,从而导致光生电子和用于光催化反应的空穴的可用性增加。另外,获得的BiFeO3-x样品表现出良好的光催化可重复使用性。

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