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Apatite-forming ability of titanium compound nanotube thin films formed on a titanium metal plate in a simulated body fluid
Institution:1. Department of Cardiologic, Thoracic and Vascular Sciences, University of Padova, Via Giustiniani 2, I-35128 Padova, Italy;2. Division of Orthopaedics and Trauma, Hospital of Este (Padova), Via San Fermo 10, I-35042 Este (Padova), Italy
Abstract:We compared the apatite-forming ability of a sodium titanate nanotube thin film, an anatase-type titanium dioxide nanotube thin film, and a silver nanoparticle/silver titanate nanotube nanocomposite thin film, in simulated body fluid. The ability of the silver nanoparticle/silver titanate nanotube nanocomposite thin film is slightly higher than that of the anatase-type titanium dioxide nanotube thin film and significantly higher than that of the sodium titanate nanotube thin film. The high ability of the silver nanoparticle/silver titanate nanotube nanocomposite thin film is a newly observed phenomenon, which is probably due to the crystal structure of silver titanate – specifically, to the surface atomic arrangement, the large amount of Ti–OH formed on the nanotube surface, or both. The anatase-type titanium dioxide nanotube thin film and the silver nanoparticle/silver titanate nanotube nanocomposite thin film may have bright prospects for future use in implant materials such as artificial joints. The silver nanoparticle/silver titanate nanotube nanocomposite thin film is particularly promising for its antibacterial properties.
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