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Surface and Electrochemical Analysis of Titanium Submitted to Alkaline Treatment by SEM, XRD and EIS

机译:SEM,XRD和EIS提交给碱性处理的钛的表面和电化学分析

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Although titanium metal has been used intensively in the last years as biomaterial in the medical and dental areas its surface is not bioactive. In this work, titanium metal was submitted to an alkali treatment in order to make the metal surface bioactive. The samples were submitted to alkaline treatment (AT) using NaOH 5M aqueous solution at 60°C for 24 h and after that they were heated thermically to stabilize the layer obtained with AT. The bioactivity of the samples was evaluated soaking them into the simulated body fluid (SBF) at 36,5°C for 28 days. The morphological, structural changes and the electrochemical characterization were analyzed using scanning electron microscopy, x-ray diffraction and electrochemical impedance spectroscopy (EIS), respectively. It was verified that after AT plus heat treatment (HT) a sodium titanate layer was formed on the samples surface and after the bioactivity tests an apatite layer was formed. Impedance analysis show that the resistance of film on Ti is high and this value increases when the sample is soaked in SBF. It means that the apatite (HPA) film is occurring and the value of the capacitance with the presence of the HPA film (C_p) values indicate that the film maintain a compact and uniform characteristics.
机译:虽然钛金属在过去几年中被密集使用,但在医疗和牙科区域的生物材料中,其表面不是生物活性。在这项工作中,将钛金属提交至碱处理,以使金属表面生物活性。使用NaOH 5M水溶液在60℃下将样品在60℃下在60℃下将其提交至碱性处理(AT),然后热热加热以稳定用AT获得的层。评价样品的生物活性在36,5℃下浸泡在模拟体液(SBF)中28天。使用扫描电子显微镜,X射线衍射和电化学阻抗光谱(EIS)分析形态学,结构变化和电化学表征。验证,在加热处理(HT)之后,在样品表面上形成钛酸钠层,并在生物活性试验后形成磷灰石层。阻抗分析表明,当样品浸泡在SBF时,薄膜对Ti的电阻很高,并且该值增加。这意味着磷灰石(HPA)膜正在发生,并且具有HPA膜(C_P)值存在的电容的值表明膜保持紧凑且均匀的特性。

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