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钙钛矿型LaFeO3/蒙脱石纳米复合材料:合成、界面特性及增强的光催化活性

Perovskite LaFeO3/montmorillonite nanocomposites: synthesis, interface characteristics and enhanced photocatalytic activity.

作者信息

Peng Kang, Fu Liangjie, Yang Huaming, Ouyang Jing

机构信息

Centre for Mineral Materials, School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, China.

Key Laboratory for Mineral Materials and Application of Hunan Province, Central South University, Changsha 410083, China.

出版信息

Sci Rep. 2016 Jan 18;6:19723. doi: 10.1038/srep19723.

Abstract

Perovskite LaFeO3/montmorillonite nanocomposites (LaFeO3/MMT) have been successfully prepared via assembling LaFeO3 nanoparticles on the surface of montmorillonite with citric acid assisted sol-gel method. The results indicated that the uniform LaFeO3 nanoparticles were densely deposited onto the surface of montmorillonite, mainly ranging in diameter from 10 nm to 15 nm. The photocatalytic activity of LaFeO3/MMT was evaluated by the degradation of Rhodamine B (RhB) under visible light irradiation, indicating that LaFeO3/MMT exhibited remarkable adsorption efficiency and excellent photocatalytic activity with the overall removal rate of RhB up to 99.34% after visible light irradiation lasting for 90 min. The interface characteristic and possible degradation mechanism were explored. The interface characterization of LaFeO3/MMT suggested that LaFeO3 nanoparticles could be immobilized on the surface of montmorillonite with the Si-O-Fe bonds. The abundant hydroxyl groups of montmorillonite, semiconductor photocatalysis of LaFeO3 and Fenton-like reaction could enhance the photocatalytic degradation through a synergistic effect. Therefore, the LaFeO3/MMT is a very promising photocatalyst in future industrial application to treat effectively wastewater of dyes.

摘要

通过柠檬酸辅助溶胶 - 凝胶法将LaFeO₃纳米颗粒组装在蒙脱石表面,成功制备了钙钛矿型LaFeO₃/蒙脱石纳米复合材料(LaFeO₃/MMT)。结果表明,均匀的LaFeO₃纳米颗粒密集沉积在蒙脱石表面,直径主要在10nm至15nm范围内。通过在可见光照射下罗丹明B(RhB)的降解来评估LaFeO₃/MMT的光催化活性,结果表明LaFeO₃/MMT表现出显著的吸附效率和优异的光催化活性,在可见光照射90分钟后,RhB的总去除率高达99.34%。探讨了其界面特性和可能的降解机理。LaFeO₃/MMT的界面表征表明,LaFeO₃纳米颗粒可以通过Si - O - Fe键固定在蒙脱石表面。蒙脱石丰富的羟基、LaFeO₃的半导体光催化作用和类芬顿反应可以通过协同效应增强光催化降解。因此,LaFeO₃/MMT在未来工业应用中是一种非常有前景的光催化剂,可有效处理染料废水。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2137/4726031/ecc7f2d6d0cb/srep19723-f1.jpg

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