首页> 外文期刊>Journal of biomaterials applications >Effect of surface treatments on anodic oxide film growth and electrochemical properties of tantalum used for biomedical applications.
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Effect of surface treatments on anodic oxide film growth and electrochemical properties of tantalum used for biomedical applications.

机译:表面处理对生物医学应用钽的阳极氧化膜生长和电化学性能的影响。

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摘要

Self-expandable nitinol (nickel-titanium) alloys and 316L stainless steel are the most commonly used materials in the production of coronary stents. However, tantalum (Ta) has already been used to make stents for endovascular surgery and may constitute an alternative to other materials because of its better electrochemical performance, namely its higher corrosion resistance, as well as its radio-opacity. The characterization of wet polished, chemically polished, wet polished anodized, and chemically polished anodized Ta electrodes has been performed in a 0.15 M NaCl solution (simulated body fluid) using Ucorr = f(t) measurements, anodic polarizations, capacity measurements, anodic oxidations, and atomic force microscopy (AFM) imaging. Anodic polarization curves have shown that the abnormal current density peak with a maximum value around 1.65 V (critical applied potential, Uc) disappeared for the anodized electrodes indicating a probable relationship between the surface states and the film growth. These results are confirmed by capacity measurements. The behavior of wet polished and chemically polished electrodes during anodic oxidations seemingly indicated that for these particular treatments the film growth is different. The AFM images and roughness measurements have shown that chemical polishing produced smoother electrodes, a fact probably related to the differences in film growth.
机译:自膨胀镍钛合金(镍钛合金)和316L不锈钢是冠状动脉支架生产中最常用的材料。但是,钽(Ta)已被用于制造血管内手术支架,由于其更好的电化学性能(即更高的耐腐蚀性和不透射线性),钽可能成为其他材料的替代物。使用Ucorr = f(t)测量,阳极极化,容量测量,阳极氧化在0.15 M NaCl溶液(模拟体液)中进行了湿抛光,化学抛光,湿抛光阳极氧化和化学抛光阳极氧化Ta电极的表征,以及原子力显微镜(AFM)成像。阳极极化曲线表明,对于阳极氧化的电极,最大值为1.65 V(临界施加电势,Uc)附近的异常电流密度峰值消失了,这表明表面状态与薄膜生长之间可能存在关系。这些结果通过容量测量得到证实。湿法抛光和化学抛光的电极在阳极氧化过程中的行为似乎表明,对于这些特殊处理,膜的生长是不同的。 AFM图像和粗糙度测量结果表明,化学抛光可产生更平滑的电极,这一事实可能与薄膜生长的差异有关。

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