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首页> 外文期刊>Journal of Photopolymer Science and Technology >Investigation of Anti-Corrosive Performance of a Si-Doped DLC-Coated Magnesium Alloy Stent Deposited by RF-Plasma CVD
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Investigation of Anti-Corrosive Performance of a Si-Doped DLC-Coated Magnesium Alloy Stent Deposited by RF-Plasma CVD

机译:RF - 血浆CVD沉积的Si掺杂DLC涂层镁合金支架的抗腐蚀性能研究

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摘要

The bioabsorbable magnesium alloy stent exhibits a high dissolution rate; therefore, it faces difficulty in achieving long-term vascular support rigidity. Thus, the control of dissolution rate using a diamond-like carbon (DLC) coating exhibiting excellent biocompatibility is studied. A conventional DLC is usually peeled off from the substrate when the stent expands. The Si-doped DLC (Si DLC) is considered to be an elastic film candidate for solving this problem. However, the effectiveness of dissolution rate control has not yet been clarified. In this research, we intend to verify the corrosion behavior to confirm the possibility of controlling the dissolution rate of a bioabsorbable magnesium alloy coated with a Si-DLC film using a 13.56 MHz radio-frequency (RF) plasma chemical vapor deposition (CVD) apparatus. Further, the corrosion behavior was examined using electrochemical measurement by cyclic voltammetry. It was observed after repeated oxidation-reduction reaction that Si-DLC can not only drastically diminish the corrosion current value and the pH in the physiological saline solution but also suppress the local corrosion unlike the untreated magnesium alloy and DLC. Thus, the possibility of dissolution velocity control was confirmed.
机译:生物可吸收的镁合金支架表现出高溶出速率;因此,它面临难以实现长期血管支持刚性。因此,研究了使用表现出优异的生物相容性的金刚石状碳(DLC)涂层的溶出速率的控制。当支架膨胀时,常规DLC通常从基板上剥离。 Si-掺杂的DLC(Si DLC)被认为是用于解决这个问题的弹性膜候选者。然而,溶解率控制的有效性尚未澄清。在这项研究中,我们打算验证腐蚀行为,以确认使用13.56MHz射频(RF)等离子体化学气相沉积(CVD)装置控制涂有Si-DLC膜的生物可吸收镁合金的溶出速率的可能性。此外,通过循环伏安法使用电化学测量检查腐蚀行为。在重复氧化还原反应后观察到,即Si-DLC不能大幅度地减小生理盐水溶液中的腐蚀电流值和pH,而且还抑制不同于未处理的镁合金和DLC的局部腐蚀。因此,确认了溶解速度控制的可能性。

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