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Carbon nitride thin films as protective coatings for biomaterials: synthesis, mechanical and biocompatibility characterizations

机译:氮化碳薄膜作为生物材料的保护涂层:合成,机械和生物相容性表征

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摘要

Amorphous carbon nitride thin films have been deposited on Ti6Al4V by radiofrequency magnetron sputtering and by plasma immersion ion implantation (PIII). The aim of this study is to identify deposition conditions for which the mechanical and biological properties of deposited films can lead to application in biocompatible protective coatings. In magnetron sputtering, the target is made of graphite and the plasma is a mixture of argon and nitrogen. In PIII process, the deposition mechanism is a combination of an implantation-diffusion process and a chemical vapor deposition using a CH_4 and N_2 plasma. The process has been shown to lead to the deposition of a carbon nitride coating. The mechanical properties have been investigated using in situ tensile tests performed in a scanning electron microscope. The study focussed particularly on the first steps of the damage process. The surface energy has been assessed by the drop contact angle measurements and surface is shown to be hydrophilic. This explains the good biological behavior determined by in vitro cell adhesion kinetics.
机译:非晶态氮化碳薄膜已通过射频磁控溅射和等离子浸没离子注入(PIII)沉积在Ti6Al4V上。这项研究的目的是确定沉积条件,在该条件下沉积膜的机械和生物学特性可以导致在生物相容性保护涂料中的应用。在磁控溅射中,靶材由石墨制成,等离子体是氩气和氮气的混合物。在PIII工艺中,沉积机理是注入扩散工艺与使用CH_4和N_2等离子体进行化学气相沉积的结合。已经证明该方法导致氮化碳涂层的沉积。使用在扫描电子显微镜中进行的原位拉伸试验研究了机械性能。该研究特别关注损害过程的第一步。表面能量已经通过液滴接触角测量进行了评估,并且表面显示为亲水性的。这解释了由体外细胞粘附动力学确定的良好生物学行为。

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