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Photocatalytic Activity Enhancement Of Tio_2 Films By Micro And Nano-structured Surface Modification

机译:微米和纳米结构表面改性增强Tio_2薄膜的光催化活性

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摘要

Titanium oxide thin films were deposited by spin coating using a precursor solution of titanium oxide (IV) acetylacetonate. To increase the contact surface area of the films, TiO_2 microspheres were added to the surface of the films. These spheres were 2 μm in diameter and formed agglomerates on the surface. They did not spread uniformly across the substrate, creating different roughnesses and morphologies along the surface of films. Photocatalytic properties of the samples were tested by the degradation of a methyl orange solution. The degradation performance was compared between plain films, films with microspheres and films covered with commercial TiO_2 P25 powder. The results indicate that the samples that were surface modified with TiO_2 microspheres present a photodegradation reaction rate 62 times higher than that obtained for plain TiO_2 films. The rate of reaction of the samples covered with P25 was 2 times greater than that obtained for the samples with microspheres, but the adhesion to the film was better in the case of microspheres. Moreover, samples with microspheres could be reused several times maintaining the same structural and photocatalytic properties.
机译:使用乙酰丙酮钛(IV)的前体溶液通过旋涂沉积钛氧化物薄膜。为了增加膜的接触表面积,将TiO_2微球添加到膜的表面。这些球的直径为2μm,并在表面形成团块。它们没有均匀地分布在整个基材上,沿薄膜表面产生了不同的粗糙度和形态。通过甲基橙溶液的降解测试了样品的光催化性能。比较了普通薄膜,具有微球的薄膜和覆盖有市售TiO_2 P25粉末的薄膜的降解性能。结果表明,经TiO_2微球表面改性的样品的光降解反应速率比普通TiO_2薄膜高62倍。覆盖有P25的样品的反应速率比带有微球的样品的反应速率高2倍,但在微球的情况下,对薄膜的附着力更好。此外,具有微球的样品可以重复使用几次,以保持相同的结构和光催化性能。

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  • 来源
    《Applied Surface Science》 |2009年第12期|6274-6278|共5页
  • 作者单位

    Instituto de Investigations en Materiales, Universidad National Autonoma de Mexico, A.P. 70-360, Coyoacdn 04510, D.F., Mexico;

    Instituto de Investigations en Materiales, Universidad National Autonoma de Mexico, A.P. 70-360, Coyoacdn 04510, D.F., Mexico;

    Departamento de Ciencias Naturales y Exactas, Universidad de Guadalajara, Centra Universitario de los Valles, C.P. 46600 Ameca, Jalisco, Mexico;

    Instituto de Investigations en Materiales, Universidad National Autonoma de Mexico, A.P. 70-360, Coyoacdn 04510, D.F., Mexico;

    Instituto de Investigations en Materiales, Universidad National Autonoma de Mexico, A.P. 70-360, Coyoacdn 04510, D.F., Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    photocatalysis; thin films; titanium oxide; water treatment;

    机译:光催化;薄膜;氧化钛;水处理;

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