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Bioactive Coatings Formed on Titanium by Plasma Electrolytic Oxidation: Composition and Properties

机译:通过等离子体电解氧化在钛上形成的生物活性涂层:组成和性能

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摘要

Bioactive coatings on VT1-0 commercially pure titanium were formed by the plasma electrolytic oxidation (PEO). A study of the morphological features of coatings was carried out using scanning electron microscopy. A composition of formed coatings was investigated using energy-dispersive spectroscopy and X-ray diffractometry analysis. It was shown that PEO-coatings have calcium phosphate in their composition, which increases the bioactivity of the surface layer. Electrochemical properties of the samples were studied by potentiondynamic polarization and electrochemical impedance spectroscopy in different physiological media: simulated body fluid and minimum essential medium. The data of electrochemical studies indicate more than 15 times decrease in the corrosion current density for the sample with coating (5.0 × 10−9 A/cm2) as compared to the bare titanium (7.7 × 10−8 A/cm2). The formed PEO-layers have elastoplastic properties close to human bone (12–30 GPa) and a lower friction coefficient in comparison with bare metal. The wettability of PEO-layers increased. The contact angle for formed coatings reduced by more than 60° in comparison with bare metal (from 73° for titanium to 8° for PEO-coating). Such an increase in surface hydrophilicity contributes to the greater biocompatibility of the formed coating in comparison with commercially pure titanium. PEO can be prospective as a method for improving titanium surface bioactivity.
机译:通过等离子体电解氧化(PEO)形成VT1-0商业纯钛上的生物活性涂层。使用扫描电子显微镜进行涂层形态特征的研究。研究了使用能量分散光谱和X射线衍射测定分析研究了形成的涂层的组合物。结果表明,PEO涂层在其组合物中具有磷酸钙,这增加了表面层的生物活性。通过不同生理介质中的豚肿瘤性偏振和电化学阻抗光谱研究样品的电化学性质:模拟体液和最小基本培养基。电化学研究的数据表明,与裸钛(7.7×10-8A / cm2)相比,样品的腐蚀电流密度的腐蚀电流密度减小超过15倍。形成的PEO层具有靠近人骨(12-30GPa)的弹性塑料性能,与裸金属相比,较低的摩擦系数。 PEO层的润湿性增加。形成涂层的接触角与裸晶金属(从73°用于钛涂层为8°的73°到8°)相比减小了60°。与商业上纯钛相比,表面亲水性的这种升高有助于形成所形成的涂层的更大的生物相容性。 PEO可以是改善钛表面生物活性的方法。

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