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Tantalum coating inhibits Ni-migration from titanium out-diffusion in NiTi shape memory biomedical alloy

机译:钽涂层抑制NITI形状记忆生物医学合金中的钛外扩散的Ni迁移

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Despite the presence of over 56% Ni by weight, equiatomic NiTi is generally considered biocompatible as it naturally oxidises to form a surface oxide mainly composed of biocompatible oxides of titanium (TiOx). This layer is formed by an oxidation mechanism that promotes out-diffusion of Ti leaving a Ti-depleted, Ni rich subsurface. The long-term in vivo stability of the naturally grown TiOx layer has been a concern as Ni can leach out through this thin, defective layer. The leaching of nickel (Ni) is thus a continuing threat to the alloy's otherwise outstanding biocompatibility. We have found that a layer of reactively sputtered tantalum (Ta) oxide on the bulk NiTi restricts Ti-out-migration through a biocompatible Ti/Ta inter-diffusion layer that provides a larger barrier against Ni leaching. We have investigated this inter-diffusion as a function of sputtering process parameters and post processing treatments. Surface and interface analytical techniques such as X-ray photoelectron spectroscopy, scanning electron microscopy, energy dispersive X-ray spectroscopy, cross sectional transmission electron microscopy and non-destructive ion beam analysis techniques such as Rutherford back-scattering spectrometry and particle induced X-ray emission were used to evaluate the nature of this inter-diffusion layer which can improve long-term biocompatibility of NiTi.
机译:尽管存在超过56%的Ni重量,但均衡的Niti通常被认为是生物相容的,因为它自然氧化以形成表面氧化物,主要由钛(TiOx)的生物相容性氧化物组成。该层由氧化机制形成,该氧化机理促进Ti的外扩散,留下Ti耗尽的Ni富级地下。天然生长的TiOx层的长期稳定性是令人担忧的是,因为Ni可以通过这种薄的缺陷层渗出。因此,镍(Ni)的浸出是对合金否则卓越的生物相容性的持续威胁。我们发现,散装Niti上的一层反应性溅射钽(Ta)氧化物通过生物相容性Ti / Ta间扩散层限制Ti-Out-Out迁移,其为Ni浸出提供更大的屏障。我们研究了这种帧间扩散作为溅射工艺参数和后处理处理的函数。表面和界面分析技术,如X射线光电子能谱,扫描电子显微镜,能量分散X射线光谱,横截面透射电子显微镜和非破坏性离子束分析技术,如Rutherford背散射光谱和颗粒诱导的X射线用于评估该扩散层的性质,可以改善Niti的长期生物相容性的这种扩散层的性质。

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