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Influence of hydrothermal treatment on the surface characteristics and electrochemical behavior of Ti-6Al-4V bio-functionalized through plasma electrolytic oxidation

机译:水热处理对通过等离子体电解氧化的Ti-6Al-4V生物官能化表面特性和电化学行为的影响

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摘要

The performance of biomaterials in general and orthopaedic biomaterials in particular is dependent on both the chemistry and topography of their surfaces. It is therefore important to tailor both of those aspects through an appropriate surface modification technique. Here, we examined the influence of hydrothermal treatment on the surface characteristics and electrochemical behavior of Ti-6Al-4V specimens whose surfaces were modified using plasma electrolytic oxidation (PEO). Even though no calcium-phosphorous related crystalline compound was identified in the XRD spectra of PEO layers, hydroxyapatite crystals were clearly detectable after the applied hydrothermal treatment. The partial water absorption of the HA crystals and their needle-like morphology resulted in a significant increase in the wettability of the surfaces. However, the application of post-PEO hydro thermal treatment also decreased the corrosion resistance of the PEO layers. The numerical results of electrochemical impedance spectroscopy demonstrated that the optimized surface properties and corrosion resistance were achieved in one of the groups, namely PEO-HT3, where the HA nanocrystals homogenously covered the entire surface of the specimens.
机译:特别是矫形生物材料中生物材料的性能尤其取决于其表面的化学和形貌。因此,重要的是通过适当的表面修改技术来定制这些方面。在这里,我们研究了使用等离子体电解氧化(PEO)改性其表面改性的Ti-6Al-4V样本的表面特性和电化学行为的影响。尽管在PEO层的XRD磷光谱中没有鉴定氧化铝相关结晶化合物,但在施加的水热处理后,清楚地检测羟基磷灰石晶体。 HA晶体的部分吸水及其针状形态导致表面润湿性的显着增加。然而,PEO水电热处理的应用也降低了PEO层的耐腐蚀性。电化学阻抗光谱的数值结果表明,在其中一个基团中实现了优化的表面性质和耐腐蚀性,即PEO-HT3,其中HA纳米晶体均匀地覆盖了样本的整个表面。

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