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Effect of nitrogen on biocorrosion behavior of high nitrogen nickel-free stainless steel in different simulated body fluids

机译:氮对高氮无镍不锈钢在不同模拟体液中生物腐蚀行为的影响

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The aim of this research is to study the biocorrosion behavior of high nitrogen nickel-free stainless steel (HNS) with different nitrogen content, also with comparison to AISI 317L, in three different simulated body fluids. The comparison was focused on the influence of nitrogen in HNS and different protein solutions on the passive behavior using electrochemical impedance spectroscopy (EIS), cyclic voltammetry (CV) and capacitance measurements (Mott-Schottky approach). The study revealed that HNS possessed thicker and more protective passive films with increase of nitrogen, which could improve the biocorrosion resistance and biocompatibility after implanted. The passive films behaved as n-type semiconductors and showed a decrease in donor density by nitrogen addition, thus indicating more beneficial for haemocompatibility. The electrochemical behavior recorded in the albumin and fibrinogen solutions revealed protein played an important role in the biocorrosion of HNS, which could result in the breakout of passive films and enhance the corrosion rate by means of chelation.
机译:这项研究的目的是研究具有不同氮含量的高氮无镍不锈钢(HNS)在三种不同的模拟体液中的生物腐蚀行为,并与AISI 317L进行比较。比较的重点是使用电化学阻抗谱(EIS),循环伏安法(CV)和电容测量(Mott-Schottky方法)对HNS和不同蛋白质溶液中的氮对被动行为的影响。研究表明,随着氮的增加,HNS拥有更厚,更具保护性的钝化膜,可以改善植入后的抗生物腐蚀性和生物相容性。钝化膜表现为n型半导体,并且通过添加氮而显示出供体密度的降低,因此表明对血液相容性更有利。在白蛋白和纤维蛋白原溶液中记录的电化学行为表明蛋白质在HNS的生物腐蚀中起着重要作用,这可能导致钝化膜的破裂并通过螯合提高腐蚀速率。

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