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TiO_2-Bioactive Glass Nanostructure Composite Films Produced by a Sol-Gel Method: In Vitro Behavior and UV-Enhanced Bioactivity

机译:溶胶-凝胶法制备TiO_2-生物活性玻璃纳米结构复合膜的体外行为和紫外增强生物活性

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The aim of this study is to develop TiO_2, titania, -based composite films for 316 stainless steel substrate and to improve their apatite-forming activity. A series of sol-gel derived bioactive glass (49S) and bioactive glass (49S)-TiO_2 films were deposited on the 316L stainless steel substrates by the spin-coating method. Amorphous bioactive glass (49S) film and polycrystalline titania-bioactive glass composite films were obtained after annealing the deposited layers at 600℃. The microstructure and in vitro bioactivity of the composite films as well as the effect of titania nanopowder content and ultra violet (UV) irradiation on the in vitro bioactivity were investigated by scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS). While bioactivity tests are often carried out within 28-day periods, SEM and EDS data show that, after soaking in SBF for just 7 days, the prepared composite surfaces are covered with an apatite layer. The grown apatite layer consists of spherulites formed by nanosized needle-like aggregates. Fourier transform infrared spectroscopy investigations confirm apatite formation and suggest that the formed apatite is carbonated.
机译:这项研究的目的是开发用于316不锈钢基底的TiO_2,二氧化钛基复合膜,并改善其磷灰石形成活性。通过旋涂法将一系列溶胶-凝胶衍生的生物活性玻璃(49S)和生物活性玻璃(49S)-TiO_2膜沉积在316L不锈钢基底上。将沉积层在600℃退火,得到非晶态生物活性玻璃(49S)膜和多晶二氧化钛-生物活性玻璃复合膜。通过扫描电子显微镜(SEM)和能量色散谱(EDS)研究了复合膜的微观结构和体外生物活性,以及​​二氧化钛纳米粉体含量和紫外线(UV)对体外生物活性的影响。虽然通常在28天内进行生物活性测试,但SEM和EDS数据显示,在SBF中浸泡仅7天后,制备的复合材料表面覆盖了磷灰石层。生长的磷灰石层由纳米尺寸的针状聚集体形成的球晶组成。傅里叶变换红外光谱研究证实了磷灰石的形成,并表明所形成的磷灰石是碳酸盐的。

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