首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The effect of static applied potential on the 24-hour impedance behavior of commercially pure titanium in simulated biological conditions.
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The effect of static applied potential on the 24-hour impedance behavior of commercially pure titanium in simulated biological conditions.

机译:在模拟的生物学条件下,静态施加电势对商业纯钛24小时阻抗行为的影响。

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Potential step impedance analysis was utilized to evaluate the electrochemical impedance of commercially pure titanium (cpTi) samples that were polarized to static potentials (range from -1000 mV to +1000 mV vs. Ag/AgCl) and immersed in physiologically relevant electrolytes [phosphate buffered saline (PBS) and cell culture medium with 10% fetal bovine serum (AMEM + FBS)] for 24 hrs. The cpTi impedance outcomes were a complex function of voltage, solution constituents, and immersion time. In the 0 mV to +1000 mV range, oxide growth was observed over 24 hr immersion in both solutions based on decreasing current density (approximately 10(-6) A/cm(2) to approximately 10(-8) A/cm(2)) and increasing R(p) (200 kOmega cm(2) to approximately 10 MOmega cm(2)). Below 0 mV, the 24 hr R(p) decreased with negative potential to approximately 15 kOmega cm(2). After 24 hr immersion, oxide dissolution and/or adsorption of organic species caused the capacitance to increase at -1000 mV (AMEM + FBS & PBS) and at -600 mV (AMEM + FBS only). Twenty-four hours of immersion in AMEM + FBS at -1000 mV and -600 mV produced a surface coloration that is likely due to alteration of oxide valance state and/or doping level. This work shows that Ti surface oxide and its electrochemical behavior can be altered dramatically under sustained cathodic potentials.
机译:利用电位阶跃阻抗分析来评估商业纯钛(cpTi)样品的电化学阻抗,该样品被极化成静态电位(相对于Ag / AgCl为-1000 mV至+1000 mV),并浸入生理上相关的电解质中[磷酸盐缓冲液生理盐水(PBS)和含10%胎牛血清(AMEM + FBS)的细胞培养基培养24小时。 cpTi阻抗结果是电压,溶液成分和浸入时间的复杂函数。在0 mV至+1000 mV的范围内,由于电流密度的降低(大约10(-6)A / cm(2)到大约10(-8)A / cm( 2)),并将R(p)(200 kOmega cm(2)增大到大约10 MOmega cm(2))。低于0 mV,24小时R(p)以负电位下降至大约15 kOmega cm(2)。浸泡24小时后,氧化物的溶解和/或有机物的吸附导致电容在-1000 mV(AMEM + FBS和PBS)和-600 mV(仅AMEM + FBS)下增加。在-1000 mV和-600 mV的AMEM + FBS中浸泡二十四小时会产生表面着色,这很可能是由于氧化物价态和/或掺杂水平的改变所致。这项工作表明,在持续的阴极电势下,钛表面氧化物及其电化学行为会发生巨大变化。

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