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Electrochemical behaviour and bioactivity of self-organized TiO2 nanotube arrays on Ti-6Al-4V in Hanks' solution for biomedical applications

机译:汉克斯生物医学应用溶液中Ti-6Al-4V上自组织TiO2纳米管阵列的电化学行为和生物活性

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In the present work, the formation of self-organized titanium oxide nanotube layer by anodic oxidation on titanium alloy Ti-6Al-4V and its influence on growth of apatite on Ti-6Al-4V is reported. Anodization was carried out in sulfuric acid and hydrofluoric acid containing electrolyte and the anodized surface was characterized by micro-Raman, XRD and FESEM. The corrosion behavior of the anodized sample was investigated through electrochemical impedance spectroscopy (EIS) and potentiodynamic polarization studies in simulated body fluid (Hanks' solution). The influence of TiO2 nano tubes on the growth of apatite on the anodized sample was investigated by immersion in Hanks' solution for 1 and 7 days. The investigations show that the native oxide on the sample is replaced by self assembled nanotube array by anodization. The anodic oxide consist both anatase and rutile. After vacuum annealing at 600 degrees C, intensity of rutile peak increased. FESEM of samples annealed at 450 degrees C show tubular morphology whereas those annealed at 600 degrees C show collapse of nano tubes. Corrosion resistance of the anodized sample was comparable with that of the untreated samples. Electrochemical impedance data of the substrate was fitted with two time constant equivalent circuit and that of anodized samples with three time constant equivalent circuit. FESEM images of immersed samples show that the growth of apatite is more with larger sized deposits on anodized surface as compared to that on the untreated substrate. XPS investigation of immersed sample shows presences of calcium, phosphorous and oxygen in hydroxide/phosphate form on the anodized sample. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在目前的工作中,报道了在钛合金Ti-6Al-4V上通过阳极氧化形成自组织氧化钛纳米管层及其对磷灰石在Ti-6Al-4V上生长的影响。在含硫酸和氢氟酸的电解液中进行阳极氧化,并通过显微拉曼,XRD和FESEM对阳极氧化表面进行表征。通过电化学阻抗谱(EIS)和在模拟体液(汉克斯溶液)中的电位动力学极化研究,研究了阳极氧化样品的腐蚀行为。通过在Hanks溶液中浸泡1天和7天,研究了TiO2纳米管对阳极氧化样品上磷灰石生长的影响。研究表明,样品上的天然氧化物通过阳极氧化被自组装纳米管阵列所取代。阳极氧化物由锐钛矿和金红石组成。在600℃下真空退火后,金红石峰的强度增加。在450℃退火的样品的FESEM显示为管状形态,而在600℃退火的样品则显示纳米管塌陷。阳极氧化样品的耐腐蚀性与未处理样品相当。衬底的电化学阻抗数据装有两个时间常数等效电路,而阳极氧化样品的电化学阻抗数据装有三个时间常数等效电路。浸没样品的FESEM图像显示,与未处理的基材相比,在阳极氧化的表面沉积较大尺寸的磷灰石的生长更多。 XPS对浸没样品的研究表明,在阳极氧化样品上以氢氧化物/磷酸盐形式存在钙,磷和氧。 (C)2014 Elsevier Ltd.保留所有权利。

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