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首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Wettability and Biocompatibility of TaC_x Films Deposited on AISI316L Stainless Steel: Effect of Methane Concentration
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Wettability and Biocompatibility of TaC_x Films Deposited on AISI316L Stainless Steel: Effect of Methane Concentration

机译:在AISI316L不锈钢上沉积的TaC_x薄膜的润湿性和生物相容性:甲烷浓度的影响

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The present study aimed at investigating the effect of various CH4 concentrations ranging from 0 to 30% on wettability and biocompatibility of TaCx films which was deposited on AISI316L SS by reactive magnetron sputtering. In this regard, the structure, topography, wettability and biocompatibility of films studied by means of FESEM equipped with EDS, RBS/NRA, Raman spectroscopy, FT-IR, GIXRD, water contact angle measurement, MTT assay and immunostaining methods. it was found that the chemical nature of the coatings strongly depends on CH4 concentration. The deposited films can be categorized into three distinguishable types, namely: metallic, ceramic and amorphous, depending on CH4 concentration during the deposition procedure. Moreover, surface morphology of the coatings changed from pyramidal to spherical by increment of CH4 concentration. In addition, the wettability of the coatings decreased by increasing carbon content. However, interestingly, the coatings with the same chemical nature showed almost the same wettability. Furthermore, the investigation of the biocompatibility of the films revealed that applying the TaC base films improves the cell viability of AISI316L SS by an average value of 22%. Moreover, viability test indicated that the increasing CH4 concentration leads to further enhancement of coatings biocompatibility.
机译:本研究旨在研究0-30%的各种CH4浓度对通过反应磁控溅射沉积在AISI316L SS上的TaCx薄膜的润湿性和生物相容性的影响。在这方面,通过配备有EDS,RBS / NRA,拉曼光谱,FT-IR,GIXRD,水接触角测量,MTT测定和免疫染色方法的FESEM研究膜的结构,形貌,润湿性和生物相容性。已经发现,涂层的化学性质很大程度上取决于CH 4的浓度。根据沉积过程中的CH4浓度,可将沉积的薄膜分为三类:金属的,陶瓷的和非晶的。而且,随着CH4浓度的增加,涂层的表面形态从金字塔形变为球形。另外,通过增加碳含量降低了涂层的润湿性。然而,有趣的是,具有相同化学性质的涂层表现出几乎相同的润湿性。此外,对膜的生物相容性的研究表明,使用TaC基膜可将AISI316L SS的细胞生存力提高22%的平均值。此外,可行性测试表明,CH4浓度的增加导致涂料生物相容性的进一步提高。

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