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Influence of biocompatible metal ions (Ag, Fe, Y) on the surface chemistry, corrosion behavior and cytocompatibility of Mg-1Ca alloy treated with MEVVA

机译:生物相容性金属离子(Ag,Fe,Y)对MEVVA处理的Mg-1Ca合金表面化学,腐蚀行为和细胞相容性的影响

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摘要

Mg-1Ca samples were implanted with biocompatible alloy ions Ag, Fe and Y respectively with a dose of 2 x 10(17) ions cm(-2) by metal vapor vacuum arc technique (MEVVA). The surface morphologies and surface chemistry were investigated by SEM, AES and XPS. Surface changes were observed after all three kinds of elemental ion implantation. The results revealed that the modified layer was composed of two sublayers, including an outer oxidized layer with mixture of oxides and an inner implanted layer, after Ag and Fe ion implantation. Y ion implantation induced an Mg/Ca-deficient outer oxidized layer and the distribution of Y along with depth was more homogeneous. Both electrochemical test and immersion test revealed accelerated corrosion rate of Ag-implanted Mg-1Ca and Fe-implanted Mg-1Ca, whereas Y ion implantation showed a short period of protection since enhanced corrosion resistance was obtained by electrochemical test, but accelerated corrosion rate was found by long period immersion test. Indirect cytotoxicity assay indicated good cytocompatibility of Y-implanted Mg-1Ca. Moreover, the corresponding corrosion mechanisms involving implanting ions into magnesium alloys were proposed, which might provide guidance for further application of plasma ion implantation to biodegradable Mg alloys. (C) 2015 Elsevier B.V. All rights reserved.
机译:Mg-1Ca样品通过金属蒸气真空电弧技术(MEVVA)分别以2 x 10(17)离子cm(-2)的剂量注入了生物相容性合金离子Ag,Fe和Y。通过SEM,AES和XPS研究了表面形貌和表面化学。在所有三种元素离子注入之后都观察到了表面变化。结果表明,改性层由两个子层组成,包括银和铁离子注入后的外层氧化层和氧化物的混合物以及内层。 Y离子注入引起Mg / Ca缺乏的外部氧化层,并且Y随深度的分布更加均匀。电化学测试和浸没测试均显示出Ag注入的Mg-1Ca和Fe注入的Mg-1Ca的加速腐蚀速率,而Y离子注入显示出较短的保护期,因为通过电化学测试获得了增强的耐腐蚀性,但加速腐蚀速率为经长期浸泡试验发现。间接细胞毒性试验表明Y植入的Mg-1Ca具有良好的细胞相容性。此外,提出了将离子注入镁合金的相应腐蚀机理,这可能为进一步将等离子体离子注入可生物降解的镁合金提供指导。 (C)2015 Elsevier B.V.保留所有权利。

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