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Effect of the coexistence of albumin and H2O2 on the corrosion of biomedical cobalt alloys in physiological saline

机译:白蛋白和H2O2共存对生理盐水生物医学钴合金腐蚀的影响

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摘要

The corrosion of Co-28Cr-6Mo and Co-35Ni-20Cr-10Mo, as biomedical alloys, has been investigated for effects of typical species (albumin and H2O2) in physiological saline, with their coexistence explored for the first time. Electrochemical and long term immersion tests were carried out. It was found that Co alloys were not sensitive to the presence of albumin alone, which slightly promoted anodic dissolution of Co-35Ni-20Cr-10Mo without noticeably affecting Co-28Cr-6Mo and facilitated oxide film dissolution on both alloys. H2O2 led to a clear drop in corrosion resistance, favouring metal release and surface oxide formation and inducing much thicker but less compact oxide films for both alloys. The coexistence of both species resulted in the worst corrosion resistance and most metal release, while the amount and composition of surface oxide remained at a similar level as in the absence of both. The effect of H2O2 inducing low compactness of surface oxides should prevail on deciding the poor corrosion protection ability of passive film, while albumin simultaneously promoted dissolution or inhibited formation of oxides due to H2O2. Corrosion resistance was consistently lower for Co-35Ni-20Cr-10Mo under each condition, the only alloy where the synergistic effect of both species was clearly demonstrated. This work suggests that the complexity of the environment must be considered for corrosion resistance evaluation of biomedical alloys.
机译:CO-28CR-6MO和CO-35NI-20CR-10MO作为生物医学合金的腐蚀已经研究了典型物种(白蛋白和H2O2)在生理盐水中的影响,首次探讨了它们的共存。进行电化学和长期浸渍试验。发现CO合金对单独的白蛋白存在不敏感,这略微促进了CO-35NI-20CR-10MO的阳极溶解,而不明显影响两种合金上的CO-28CR-6MO和促进的氧化膜溶解。 H2O2导致耐腐蚀性的透明下降,最有利于金属释放和表面氧化物形成,并为两个合金诱导更厚但更少于致密的氧化物薄膜。两种物种的共存导致耐腐蚀性和大多数金属释放,而表面氧化物的量和组成保持在类似水平的情况下。 H2O2诱导表面氧化物低紧凑性的效果应在判断无源膜的耐腐蚀能力差,而白蛋白同时促进溶解或抑制由于H 2 O 2引起的氧化物的形成。在每种条件下CO-35NI-20CR-10MO耐腐蚀性持续较低,唯一的合金也明确证明了两种物种的协同效应。这项工作表明,必须考虑环境的复杂性进行生物医学合金的耐腐蚀性评估。

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    《RSC Advances》 |2019年第57期|共12页
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  • 正文语种 eng
  • 中图分类 化学;
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