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二氧化铈/石墨相氮化碳复合材料的可控合成及其在环境中的应用。

Controllable synthesis of CeO2/g-C3N4 composites and their applications in the environment.

作者信息

She Xiaojie, Xu Hui, Wang Hefei, Xia Jiexiang, Song Yanhua, Yan Jia, Xu Yuanguo, Zhang Qi, Du Daolin, Li Huaming

机构信息

School of the Environment, Institute for Energy Research, Jiangsu University, Zhenjiang 212013, P. R. China.

出版信息

Dalton Trans. 2015 Apr 21;44(15):7021-31. doi: 10.1039/c4dt03793f.

Abstract

This research has developed a photocatalytic reactor that includes circulating water, light, and a temperature control system. CeO2/g-C3N4 composites with high photocatalytic activity and stability were synthesized by a simple and facile hydrothermal method. The obtained photocatalysts were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM) and X-ray photoelectron spectroscopy (XPS). It was found that in the CeO2/g-C3N4 composites, the CeO2 nanoparticles were homogeneously cubic in shape (from 3 to 10 nm) and were evenly dispersed on the surface of the g-C3N4. At constant temperature (30 °C), 5% CeO2/g-C3N4 photocatalyst showed the best photocatalytic activity for degrading organic dye methylene blue (MB) under visible light irradiation. The photocatalytic reaction for degrading MB followed first-order kinetics and 5% CeO2/g-C3N4 exhibited a higher apparent rate of 1.2686 min(-1), 7.8 times higher than that of the pure g-C3N4 (0.1621 min(-1)). In addition, it was found that 5% CeO2/g-C3N4 had a new property that it could be used as a sensor for the determination of trace amounts of Cu(2+). Such unique design and one-step synthesis, with an exposed high-activity surface, are important for both technical applications and theoretical investigations.

摘要

本研究开发了一种包括循环水、光照和温度控制系统的光催化反应器。通过简单便捷的水热法合成了具有高光催化活性和稳定性的CeO2/g-C3N4复合材料。采用X射线衍射(XRD)、透射电子显微镜(TEM)和X射线光电子能谱(XPS)对所得光催化剂进行了表征。结果发现,在CeO2/g-C3N4复合材料中,CeO2纳米颗粒呈均匀的立方形状(3至10纳米),并均匀分散在g-C3N4表面。在恒温(30℃)下,5% CeO2/g-C3N4光催化剂在可见光照射下对降解有机染料亚甲基蓝(MB)表现出最佳的光催化活性。降解MB的光催化反应遵循一级动力学,5% CeO2/g-C3N4表现出更高的表观速率1.2686 min(-1),比纯g-C3N4(0.1621 min(-1))高7.8倍。此外,还发现5% CeO2/g-C3N4具有一种新特性,即它可以用作测定痕量Cu(2+)的传感器。这种独特的设计和一步合成法,具有暴露的高活性表面,对技术应用和理论研究都很重要。

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