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Formation of Micro- and Nanostructures on the Nanotitanium Surface by Chemical Etching and Deposition of Titania Films by Atomic Layer Deposition (ALD)

机译:通过化学蚀刻和通过原子层沉积(ALD)沉积二氧化钛薄膜在纳米钛表面上形成微结构和纳米结构

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In this study, an integrated approach was used for the preparation of a nanotitanium-based bioactive material. The integrated approach included three methods: severe plastic deformation (SPD), chemical etching and atomic layer deposition (ALD). For the first time, it was experimentally shown that the nature of the etching medium (acidic or basic Piranha solutions) and the etching time have a significant qualitative impact on the nanotitanium surface structure both at the nano- and microscale. The etched samples were coated with crystalline biocompatible TiO2 films with a thickness of 20 nm by Atomic Layer Deposition (ALD). Comparative study of the adhesive and spreading properties of human osteoblasts MG-63 has demonstrated that presence of nano- and microscale structures and crystalline titanium oxide on the surface of nanotitanium improve bioactive properties of the material.
机译:在这项研究中,综合方法用于制备基于纳米钛的生物活性材料。集成方法包括三种方法:严重塑性变形(SPD),化学蚀刻和原子层沉积(ALD)。首次通过实验表明,蚀刻介质的性质(酸性或碱性食人鱼溶液)和蚀刻时间对纳米钛表面结构在纳米和微米尺度上都具有重要的定性影响。蚀刻后的样品通过原子层沉积(ALD)涂覆了厚度为20 nm的结晶生物相容性TiO 2 薄膜。对人类成骨细胞MG-63的粘附性和铺展性的比较研究表明,纳米和微米级结构以及纳米钛表面上的结晶氧化钛的存在改善了该材料的生物活性。

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