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Influence of silver content on the tribomechanical behavior on Ag-TiCN bioactive coatings

机译:银含量对Ag-TiCN生物活性涂层摩擦力学行为的影响

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摘要

Surface modification of bulk materials used in biomedical applications has become an important prerequisite for better biocompatibility. In particular, to overcome the particle generation, low-wear coatings based on carbon (nitrogen) and containing antimicrobial elements such as silver are promising candidates. Thus, the present work explores the potentialities of silver-containing carbonitride-based (Ag-TiCN) thin films prepared by direct current unbalanced reactive magnetron sputtering. The silver content in the coatings was varied from 0 to 26.7at.% by changing the targets and the fraction of C _2H _2 and N _2 in the gas mixture with Ar. The obtained Ag-TiCN based coatings were characterized in terms of composition and microstructure. Mechanical and tribological properties of the films were studied by nanoindentation and reciprocating pin-on disk testing in a fetal bovine serum solution, respectively. Raman, scanning electron microscope and energy dispersive X-ray analysis was carried out in the contact region after tribological tests to obtain information about the friction mechanism. The cytotoxicity of the coatings was assessed by in vitro tests using fibroblast cells. The coatings comprised a mixture of TiC _xN _(1-x), Ag and a-C(N) _x phases whose relative proportion varied depending on the Ag/Ti ratio. The mechanical, tribological and cytotoxicity properties were correlated with the chemical and phase composition. When the Ag/Ti ratios were below 0.20 (Ag contents <6.3at.%) the films resulted harder (~18GPa) with higher wear resistance (~10 ~(-6)mm ~3/Nm), showing similar friction coefficient (~0.3) and good biocompatibility.
机译:用于生物医学应用的散装材料的表面改性已成为实现更好的生物相容性的重要先决条件。特别是,为了克服颗粒的产生,基于碳(氮)并含有抗菌元素(如银)的低磨损涂层是有前途的选择。因此,本工作探讨了通过直流不平衡反应磁控溅射制备的含银碳氮化物基(Ag-TiCN)薄膜的潜力。通过改变目标以及与Ar混合的气体中C _2H _2和N _2的比例,涂层中的银含量从0到26.7at。%变化。根据组成和微观结构表征了所得的基于Ag-TiCN的涂层。通过在胎儿牛血清溶液中的纳米压痕和往复针式圆盘试验分别研究了膜的机械和摩擦学性能。经过摩擦学测试后,在接触区域进行了拉曼光谱,扫描电子显微镜和能量色散X射线分析,以获取有关摩擦机理的信息。通过使用成纤维细胞的体外测试来评估涂层的细胞毒性。涂层包含TiC_xN_(1-x),Ag和a-C(N)_x相的混合物,它们的相对比例取决于Ag / Ti比。机械,摩擦学和细胞毒性特性与化学和相组成相关。当Ag / Ti比率低于0.20(Ag含量<6.3at。%)时,薄膜硬度更高(〜18GPa),耐磨性更高(〜10〜(-6)mm〜3 / Nm),表现出相似的摩擦系数( 〜0.3)和良好的生物相容性。

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