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Fabrication of Anti-Aging TiO2 Nanotubes on Biomedical Ti Alloys

机译:生物医学钛合金上抗老化TiO2纳米管的制备

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摘要

The primary objective of this study was to fabricate a TiO2 nanotubular surface, which could maintain hydrophilicity over time (resist aging). In order to achieve non-aging hydrophilic surfaces, anodization and annealing conditions were optimized. This is the first study to show that anodization and annealing condition affect the stability of surface hydrophilicity. Our results indicate that maintenance of hydrophilicity of the obtained TiO2 nanotubes was affected by anodization voltage and annealing temperature. Annealing sharply decreased the water contact angle (WCA) of the as-synthesized TiO2 nanotubular surface, which was correlated to improved hydrophilicity. TiO2 nanotubular surfaces are transformed to hydrophilic surfaces after annealing, regardless of annealing and anodization conditions; however, WCA measurements during aging demonstrate that surface hydrophilicity of non-anodized and 20 V anodized samples decreased after only 11 days of aging, while the 60 V anodized samples maintained their hydrophilicity over the same time period. The nanotubes obtained by 60 V anodization followed by 600 °C annealing maintained their hydrophilicity significantly longer than nanotubes which were obtained by 60 V anodization followed by 300 °C annealing.
机译:这项研究的主要目的是制造TiO2纳米管表面,该表面可以随时间保持亲水性(抗老化)。为了获得非老化的亲水性表面,优化了阳极氧化和退火条件。这是第一个表明阳极氧化和退火条件会影响表面亲水性稳定性的研究。我们的结果表明,所获得的TiO2纳米管的亲水性维持受到阳极氧化电压和退火温度的影响。退火急剧降低了合成后的TiO2纳米管表面的水接触角(WCA),这与提高的亲水性相关。退火后,无论退火和阳极氧化条件如何,TiO2纳米管表面都会转变为亲水性表面。但是,老化过程中的WCA测量表明,未阳极氧化和20 V阳极氧化的样品仅在老化11天后就降低了表面亲水性,而60 V阳极氧化的样品在同一时间段内保持了亲水性。通过60 V阳极氧化然后进行600°C退火得到的纳米管的亲水性比通过60 V阳极氧化然后进行300°C退火得到的纳米管的亲水性要长得多。

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