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Biomimetic deposition of apatite on surface chemically modified porous NiTi shapememory alloy

机译:磷灰石在表面化学改性多孔NiTi形状记忆合金上的仿生沉积

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摘要

Porous NiTi shape memory alloy (SMA) with 48% porosity and an average pore size of 50800 μm was synthesized by capsule-free hot isostatic pressing (CF-HIP). To enhance the surface bioactivity, the porous NiTi SMA was subjected to H"2O"2 and subsequent NaOH treatment. Scanning electron microscopy, X-ray diffraction, and X-ray photoelectron spectroscopy analyses revealed that a porous sodium titanate (Na"2TiO"3) film had formed on the surface of the porous NiTi SMA. An apatite layer was deposited on this film after immersion in simulated body fluid at 37°C, while no apatite could be found on the surface of the untreated porous NiTi SMA. The formation of the apatite layer infers that the bioactivity of the porous NiTi SMA may be enhanced by surface chemical treatment, which is favorable for its application as bone implants. © 2008 World Scientific Publishing Company.
机译:通过无胶囊热等静压(CF-HIP)合成了孔隙率为48%,平均孔径为50800μm的多孔NiTi形状记忆合金(SMA)。为了提高表面生物活性,对多孔NiTi SMA进行H“ 2O” 2处理,然后进行NaOH处理。扫描电子显微镜,X射线衍射和X射线光电子能谱分析表明,在多孔NiTi SMA的表面上已形成多孔钛酸钠(Na” 2TiO” 3)膜。在37°C的模拟体液中浸泡后,磷灰石层沉积在该膜上,而未经处理的多孔NiTi SMA表面未发现磷灰石。磷灰石层的形成暗示通过表面化学处理可以增强多孔NiTi SMA的生物活性,这有利于其作为骨植入物的应用。 ©2008世界科学出版公司。

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