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Corrosion behaviors of TiO2 nanotube layers on titanium in Hank's solution

机译:在Hank溶液中TiO2纳米管层在钛上的腐蚀行为

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It is well known that the growth of osteoblast cultured on titanium with nanotube layers can be significantly increased compared to unanodized surfaces. In the current study, the corrosion behavior of titanium with nanotube layers was studied in naturally aerated Hank's solution using open circuit potentials (OCP), electrochemical impedance spectroscopy (EIS) and potentiodynamic polarization tests. The electrochemical results indicated that TiO2 nanotube layers on titanium showed a better corrosion resistance in simulated biofluid than that of smooth-Ti. The OCP, corrosion rate (I-corr), passive current density (I-pass) and the oxygen evolution potential (E-o) were significantly influenced by titanium oxide nanotube layers acquired by anodization. The anatase nanotube layer showed higher OCP and smaller current density than the amorphous nanotube layer. EIS analysis showed that the annealing had a significant effect on the corrosion resistance of the outer tube layer (R-t), but little effect on the corrosion resistance of the inter-barrier layer (R-b) for nanotube layers. The results suggested that titanium with TiO2 nanotube layers has an adequate electrochemical behavior for use as a dental implant material.
机译:众所周知,与未阳极氧化的表面相比,培养在具有纳米管层的钛上的成骨细胞的生长可以显着增加。在当前的研究中,使用开路电势(OCP),电化学阻抗谱(EIS)和电势极化测试,在自然曝气的汉克溶液中研究了具有纳米管层的钛的腐蚀行为。电化学结果表明,在模拟生物流体中,钛上的TiO2纳米管层比光滑Ti具有更好的耐腐蚀性。 OCP,腐蚀速率(I-corr),无源电流密度(I-pass)和氧气析出电势(E-o)受阳极氧化获得的氧化钛纳米管层的影响很大。锐钛矿纳米管层显示出比非晶纳米管层更高的OCP和更小的电流密度。 EIS分析表明,退火对外管层(R-t)的耐蚀性有显着影响,而对纳米管层的阻挡层间层(R-b)的耐蚀性影响很小。结果表明,具有TiO2纳米管层的钛具有足够的电化学性能,可用作牙科植入物材料。

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