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Anodic film growth and silver enrichment during anodizing of an Mg-0.6 at.% Ag alloy in fluoride-containing organic electrolytes

机译:阳极薄膜生长和银富集在阳极氧化时的Mg-0.6。%Ag合金中的含氟有机电解质

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摘要

Binary Mg-Ag alloys are of interest as antibacterial biodegradable materials. In the present work, the behaviour of silver during galvanostatic anodizing of a sputtering-deposited Mg-0.6 at.% Ag alloy in a fluoride/glycerol electrolyte containing 5 or 60 vol.% water was investigated. Similar alloy compositions have been shown to have potential as biomaterials in in-vitro tests. The resultant barrier-type anodic films were examined using scanning and transmission electron microscopies, glow discharge optical emission spectroscopy and Rutherford backscattering spectroscopy. The films were shown to be nano-crystalline and to contain oxide and fluoride species, with O:F atomic ratios dependent on the amount of water in the electrolyte. Silver species were incorporated into the films, accompanied by loss of silver species to the electrolyte. Notably, silver was enriched in a 6 nm thick alloy layer, to concentration of at least 12 at.%. (C) 2018 Elsevier Ltd. All rights reserved.
机译:二元Mg-Ag合金是抗菌可生物降解材料的感兴趣。 在本作本作中,银在溅射沉积的Mg-0.6的电流阳极氧化过程中的行为。%Ag合金含有5或60体积的氟化物/甘油电解质。%水。 已显示相似的合金组合物具有在体外测试中的生物材料具有潜力。 使用扫描和透射电子显微镜,辉光放电光学发射光谱和Rutherford反向散射光谱检查所得的屏障型阳极膜。 将薄膜显示为纳米结晶并含有氧化物和氟化物物质,具有O:F原子比依赖于电解质中的水量。 将银质掺入薄膜中,伴随着损失银物质到电解质。 值得注意的是,银富集在浓缩合金层中,浓缩至少12.%。 (c)2018年elestvier有限公司保留所有权利。

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