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Biocompatible Silver-containing a-C:H and a-C coatings: A Comparative Study

机译:生物相容的含银A-C:H和A-C涂层:比较研究

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Hydrogenated diamond-like-carbon (a-C:H) and hydrogen-free amorphous carbon (a-C) coatings are known to be biocompatible and have good chemical inertness. For this reason, both of these materials are strong candidates to be used as a matrix that embeds metallic elements with antimicrobial effect. In this comparative study, we have incorporated silver into diamond-like carbon (DLC) coatings by plasma based ion implantation and deposition (PBII&D) using methane (CH{sub}4) plasma and simultaneously depositing Ag from a pulsed cathodic arc source. In addition, we have grown amorphous carbon - silver composite coatings using a dual-cathode pulsed filtered cathodic-arc (FCA) source. The silver atomic content of the deposited samples was analyzed using glow discharge optical spectroscopy (GDOES). In both cases, the arc pulse frequency of the silver cathode was adjusted in order to obtain samples with approximately 5 at.% of Ag. Surface hardness of the deposited films was analyzed using the nanoindentation technique. Cell viability for both a-C:H/Ag and a-C:/Ag samples deposited on 24-well tissue culture plates has been evaluated.
机译:已知氢化金刚石样碳(A-C:H)和无氢非晶碳(A-C)涂层是生物相容性的并且具有良好的化学惰性。因此,这两种材料都是强的候选者,用作与抗微生物效应的金属元素嵌入金属元素的基质。在该比较研究中,我们通过基于等离子体的离子注入和沉积(PBII&D)将银掺入金刚石状碳(DLC)涂层中,使用甲烷(CH {Sub} 4)等离子体并同时从脉冲阴极电弧源沉积Ag。此外,我们使用双阴极脉冲过滤的阴极 - 弧(FCA)源生长非晶碳 - 银复合涂层。使用辉光放电光谱(GDOE)分析沉积样品的银原子含量。在这两种情况下,调节银阴极的电弧脉冲频率,以获得约5at%的样品。%Ag的%。使用纳米狭窄技术分析沉积膜的表面硬度。已经评估了沉积在24孔组织培养板上的A-C:H / Ag和A-C:/ Ag样品的A-C:H / Ag和A-C样品的细胞活力。

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