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Biomimetic formation of Titania Thin Films: Effect of Amino Acids on the Deposition Process

机译:二氧化钛薄膜的仿生形成:氨基酸对沉积过程的影响

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Different types of amino adds have been used as additives to control the aqueous deposition of titanium dioxide thin films on single-crystal Si wafers. Thin titania films can be obtained through a chemical bath deposition (CBD) process using TiCl4 as a precursor in an aqueous solution at temperatures below 100 °C. The addition of amino acids to the deposition solution was shown to reduce the thickness and roughness of the films and to increase their density. These protein building blocks were employed to modify the deposition rate as well as the size of aggregates that form the film. The thickness, crystallinity. morphology and composition of the grown films were characterized by a variety of techniques, including XRD, XPS, AFM and SEM. The consequences of the type of the amino acid additive (and its concentration in the solution) on the micro structural evolutions of the deposed films are thus revealed and discussed on the basis of the organic-inorganic interactions in solution and at the film surface.
机译:不同类型的氨基添加物已被用作添加剂,以控制二氧化钛薄膜在单晶硅晶片上的水沉积。可以通过化学浴沉积(CBD)工艺,在温度低于100°C的水溶液中使用TiCl4作为前体来获得二氧化钛薄膜。已显示向沉积溶液中添加氨基酸可减少薄膜的厚度和粗糙度并增加其密度。这些蛋白质构件被用来改变沉积速率以及形成薄膜的聚集体的大小。厚度,结晶度。通过各种技术,包括XRD,XPS,AFM和SEM对生长薄膜的形态和组成进行了表征。因此,基于溶液中和膜表面的有机-无机相互作用,揭示并讨论了氨基酸添加剂类型(及其在溶液中的浓度)对沉积膜的微观结构演变的影响。

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