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Microstructure, Optical and Photocatalytic Properties of TiO2 Thin Films Prepared by Chelating-Agent Assisted Sol-Gel Method

机译:螯合剂辅助溶胶-凝胶法制备TiO2薄膜的结构,光学和光催化性能

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摘要

Single and multilayer TiO2 thin films coated on two types of soda-lime glass substrates (microscope slides and cylinders) were prepared by a chelating agent-assisted sol gel method, using ethyl acetoacetate as a chelating agent, dip-coating and calcination at 500 degrees C for 2 h in air. Phase composition, microstructural, morphological and optical properties of thin films were comprehensively investigated by using XRF, advanced XRD analysis, Raman and UV-vis spectroscopy and AFM. It was found out that the thickness of thin films increases linearly with increasing number of deposited layers, indicating a good adhesion of the titania solution to a glass substrate as well as to a previously calcined layer. 1 layer film crystallized to anatase-TiO2(B) mixture with minoregligible amount of nanosized brookite, 2-4 layers films crystallized to anatase-brookite-TiO2(B) mixture. In contrast to other multilayers films, 4 layers film was highly inhomogeneous. The different phase composition of thin films was clarified based on the crystallization via titanate/s and metastable monoclinic TiO2(B) as a consequence of several phenomena; the diffusion of Na+ ions from a soda lime glass substrate, acidic conditions and repeated thermal treatment. The multilayer films were in average highly transparent (80-95%) in the visible light region with the sharp absorption edge in the UV light region. Additionally, the photocatalytic properties of selected multilayer films were compared in AO7 photodegradation. Photocatalytic experiments showed that thicker 4 layers film of tricrystalline anatase-brookite-TiO2(B) phase mixture was similarly active as thinner 3 layers film of similar phase composition, which may be a consequence of the inhomogeneity of the thicker film.
机译:采用螯合剂辅助溶胶凝胶法,以乙酰乙酸乙酯为螯合剂,浸涂和在500度下煅烧,制备了涂覆在两种钠钙玻璃基板(显微镜载玻片和圆柱体)上的单层和多层TiO2薄膜。在空气中C 2小时。利用XRF,先进的XRD分析,拉曼和紫外可见光谱以及原子力显微镜对薄膜的相组成,显微组织,形态和光学性质进行了全面研究。已经发现,薄膜的厚度随着沉积层数的增加而线性增加,表明二氧化钛溶液对玻璃基材以及对预先煅烧的层具有良好的粘附性。 1层结晶为锐钛矿-TiO2(B)混合物,并含有少量/可忽略的纳米板钛矿,2-4层结晶为锐钛矿-板钛矿-TiO2(B)混合物。与其他多层薄膜相比,四层薄膜高度不均匀。由于几种现象的结果,通过钛酸酯/秒和亚稳单斜TiO2(B)的结晶,澄清了薄膜的不同相组成。钠离子从钠钙玻璃基板上的扩散,酸性条件和反复热处理。多层膜在可见光区域平均具有高度透明性(80-95%),而在UV光区域具有明显的吸收边缘。此外,在AO7光降解中比较了所选多层膜的光催化性能。光催化实验表明,较厚的四层锐钛矿-板钛矿-TiO2(B)相混合物的膜与具有相似相组成的较薄的三层膜具有相似的活性,这可能是较厚的膜不均匀的结果。

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