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采用 Yb、N 和 F 掺杂 Er3+:Y3Al5O12 改善 TiO2 的超声催化活性以降解有机染料。

Improvement of sonocatalytic activity of TiO2 by using Yb, N and F-doped Er3+:Y3Al5O12 for degradation of organic dyes.

机构信息

Collage of Chemistry, Liaoning University, Shenyang 110036, People's Republic of China.

出版信息

Ultrason Sonochem. 2014 Jan;21(1):84-92. doi: 10.1016/j.ultsonch.2013.05.003. Epub 2013 May 17.

Abstract

In this study, several up-conversion luminescence agents (Er(3+):Y3Al5O12, Er(3+):Yb0.2Y2.79Al5O12, Er(3+):Yb0.2Y2.79Al5N0.01O11.99, Er(3+):Yb0.2Y2.79Al5F0.01O11.99 and Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98) were synthesized using sol-gel method. And then, the corresponding sonocatalyst (Er(3+):Y3Al5O12/TiO2, Er(3+):Yb0.2Y2.79Al5O12/TiO2, Er(3+):Yb0.2Y2.79Al5N0.01O11.99/TiO2, Er(3+):Yb0.2Y2.79Al5F0.01O11.99/TiO2 and Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98/TiO2 coated composites) were prepared by sol-gel coating process. The synthesized up-conversion luminescence agents and their coated composites were characterized by X-ray diffraction (XRD) and scanning electron microscope (SEM). And that, the sonocatalytic activities were detected through the degradation of Azo Fuchsine (AF) dye in aqueous solution by UV-vis spectroscopy. Some key influences such as heat-treated temperature and heat-treated time on the sonocatalytic activity of Er(3+):YbaY2.99-aNxFyAl5O12-x-y/TiO2 coated composite, as well as ultrasonic irradiation time and initial dye concentration on the sonocatalytic degradation were studied. The results showed that the doping of Yb, N and F into Er(3+):Y3Al5O12/TiO2 significantly enhanced the sonocatalytic activity of Er(3+):Y3Al5O12/TiO2 coated composite in the degradation of organic dyes. Particularly, Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98/TiO2 coated composites with 3:7 M ratio heat-treated at 550 °C for 60 min showed the highest sonocatalytic activity. At last, the experiments also indicated that the Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98/TiO2 coated composites has a good sonocatalytic activity to degrade other organic dyes under ultrasonic irradiation.

摘要

在这项研究中,使用溶胶-凝胶法合成了几种上转换发光剂(Er(3+):Y3Al5O12、Er(3+):Yb0.2Y2.79Al5O12、Er(3+):Yb0.2Y2.79Al5N0.01O11.99、Er(3+):Yb0.2Y2.79Al5F0.01O11.99 和 Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98)。然后,通过溶胶-凝胶涂覆工艺制备了相应的声催化剂(Er(3+):Y3Al5O12/TiO2、Er(3+):Yb0.2Y2.79Al5O12/TiO2、Er(3+):Yb0.2Y2.79Al5N0.01O11.99/TiO2、Er(3+):Yb0.2Y2.79Al5F0.01O11.99/TiO2 和 Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98/TiO2 涂层复合材料)。通过 X 射线衍射(XRD)和扫描电子显微镜(SEM)对合成的上转换发光剂及其涂层复合材料进行了表征。通过紫外可见光谱法检测了上转换发光剂及其涂层复合材料在水溶液中对偶氮碱性红(AF)染料的降解作用,研究了超声处理时间和初始染料浓度对声催化降解的影响。结果表明,Yb、N 和 F 掺杂到 Er(3+):Y3Al5O12/TiO2 中,显著提高了 Er(3+):Y3Al5O12/TiO2 涂层复合材料在降解有机染料中的声催化活性。特别是,在 550°C 下热处理 60 分钟,M 比为 3:7 的 Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98/TiO2 涂层复合材料表现出最高的声催化活性。最后,实验还表明,在超声辐射下,Er(3+):Yb0.2Y2.79Al5N0.01F0.01O11.98/TiO2 涂层复合材料对其他有机染料具有良好的声催化活性。

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