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Preparation of nanostructured TiO2 films with high catalytic activity and their 3D spatial distribution of anatase and rutile phases

机译:高催化活性的纳米结构TiO2薄膜的制备及其锐钛矿和金红石相的3D空间分布

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In this study, a facile, cheap, scalable, and environmentally friendly method has been developed to prepare nanostructured TiO2 coatings with a high catalytic activity. In addition, a protocol to characterize the prepared films in order to obtain consistent results between their texture, their structure, their microstructure, and their catalytic behavior has been established. For that, two types of TiO2 coatings have been fabricated by applying once TiO2 aqueous suspensions, prepared from commercial nanopowders, by immersion followed by an adequate thermal treatment. The first type of films is constituted by coatings with anatase as single phase, and the second one by films with a rutile molar fraction of X-R=0.07 +/- 0.02, determined from grazing incidence X-ray diffraction (GI-XRD) data. High spatial resolution chemical imaging, obtained by confocal Raman microscopy (CRM), of the surface and of the cross section for the films showed a good distribution of rutile without any segregation of this phase. Furthermore, high resolution electron microscopy (HREM) confirmed the presence of anatase/rutile biphasic domains in those areas in which both phases were previously found together by CRM. In addition, the catalytic data fit to a first-order kinetic model with high catalytic reaction constants (k), especially when rutile is present. Furthermore, consistent results have been found in this study between the textural, structural, and microstructural studied features with the catalytic properties for the prepared TiO2 films.
机译:在本研究中,已经开发了一种容易,廉价,可扩展性和环保的方法来制备具有高催化活性的纳米结构TiO2涂层。另外,已经建立了一种表征制备薄膜的方案,以便在其质地,其结构,微观结构和它们的催化行为之间获得一致的结果。为此,通过浸渍通过浸入式制备的TiO 2含水悬浮液,通过浸渍,通过浸入其适当的热处理来制造两种类型的TiO 2涂层。第一类薄膜由具有锐钛矿作为单相的涂层构成,并且通过X-R = 0.07 +/- 0.02的金红石摩尔分数的第二膜,从放牧入射X射线衍射(Gi-XRD)数据中确定。通过共焦拉曼显微镜(CRM),表面和薄膜的横截面的横截面获得的高空间分辨率化学成像表明金红石的良好分布而不具有该阶段的任何偏析。此外,高分辨率电子显微镜(HREM)证实了在这些区域中先前在CRM一起发现的那些区域中的锐钛矿/金红石双相结构域的存在。另外,催化数据适合具有高催化反应常数(K)的一阶动力学模型,特别是当荷丝存在时。此外,在该研究中发现了一致的结果,纹理,结构和微观结构和微观结构研究具有制备的TiO 2膜的催化性能。

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