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MoS/Cu/TiO 纳米粒子:合成、表征及其在可见光下水中亚甲基蓝光催化分解中的作用。

MoS/Cu/TiO nanoparticles: synthesis, characterization and effect on photocatalytic decomposition of methylene blue in water under visible light.

机构信息

Departamento de Química Física, Facultad de Ciencias, Universidad de Cádiz, E-11510 Puerto Real (Cádiz), Spain E-mail:

出版信息

Water Sci Technol. 2017 Apr;2017(1):184-193. doi: 10.2166/wst.2018.101.

Abstract

Photodegradation processes are of great interest in a range of applications, one of which is the photodecomposition of pollutants. For this reason, analysing nanoparticles that improve the efficiency of these processes under solar radiation are very necessary. Thus, in this study, TiO was doped with Mo and Cu using low-temperature hydrolysis as the method of synthesis. Pure TiO and x%MoS/Cu/TiO nanoparticles were prepared, where x is the theoretical quantity of MoS added (0.0%, 1.0%, 5.5%, 10.0%), setting the nominal quantity of Cu at 0.5 wt.%. The samples obtained were characterized by X-ray diffraction, Raman spectroscopy, X-ray electron spectroscopy and UV-Vis spectroscopy in diffuse reflectance mode. The results suggest that the TiO structure was doped with the Mo and Cu ions in the position of the Ti. The x%MoS/Cu/TiO samples presented lower band gap energy values and greater optical absorption in the visible region than the pure TiO sample. Lastly, the photocatalytic activity of the samples was assessed by means of the photodegradation of methylene blue under visible light. The results show that when the quantity of Mo in the co-doped samples increased (x%MoS/Cu/TiO) there were significant increases of up to 93% in the photocatalytic activity.

摘要

光降解过程在许多应用中都很重要,其中之一是污染物的光分解。出于这个原因,分析可以提高这些过程在太阳辐射下效率的纳米粒子是非常必要的。因此,在这项研究中,使用低温水解法合成了 Mo 和 Cu 掺杂的 TiO 。制备了纯 TiO 和 x%MoS/Cu/TiO 纳米粒子,其中 x 是添加的 MoS 的理论量(0.0%、1.0%、5.5%、10.0%),Cu 的名义量设定为 0.5wt.%。通过 X 射线衍射、拉曼光谱、X 射线电子能谱和紫外可见漫反射光谱对所得样品进行了表征。结果表明,TiO 结构中的 Ti 位掺杂了 Mo 和 Cu 离子。x%MoS/Cu/TiO 样品的带隙能值较低,可见光区的光吸收较大,优于纯 TiO 样品。最后,通过可见光下亚甲基蓝的光降解评估了样品的光催化活性。结果表明,当共掺杂样品中 Mo 的量增加时(x%MoS/Cu/TiO),光催化活性显著提高,最高可达 93%。

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