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In Vitro Biocompatibility of Si Alloyed Multi-Principal Element Carbide Coatings

机译:硅合金多主元素碳化物涂层的体外生物相容性

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摘要

In the current study, we have examined the possibility to improve the biocompatibility of the (TiZrNbTaHf)C through replacement of either Ti or Ta by Si. The coatings were deposited on Si and 316L stainless steel substrates by magnetron sputtering in an Ar+CH4 mixed atmosphere and were examined for elemental composition, chemical bonds, surface topography, surface electrical charge and biocompatible characteristics. The net surface charge was evaluated at nano and macroscopic scale by measuring the electrical potential and work function, respectively. The biocompatible tests comprised determination of cell viability and cell attachment to the coated surface. The deposited coatings had C/(metal+Si) ratios close to unity, while a mixture of metallic carbide, free-carbon and oxidized species formed on the film surface. The coatings’ surfaces were smooth and no influence of surface roughness on electrical charge or biocompatibility was found. The biocompatible characteristics correlated well with the electrical potential/work function, suggesting a significant role of surface charge in improving biocompatibility, particularly cell attachment to coating's surface. Replacement of either Ti or Ta by Si in the (TiZrNbTaHf)C coating led to an enhanced surface electrical charge, as well as to superior biocompatible properties, with best results for the (TiZrNbSiHf)C coating.
机译:在当前的研究中,我们已经研究了通过用Si代替Ti或Ta来提高(TiZrNbTaHf)C的生物相容性的可能性。在Ar + CH4混合气氛中通过磁控溅射将涂层沉积在Si和316L不锈钢基底上,并检查其元素组成,化学键,表面形貌,表面电荷和生物相容性。通过分别测量电势和功函数,以纳米和宏观尺度评估净表面电荷。生物相容性测试包括确定细胞活力和细胞附着在涂层表面上。沉积的涂层的C /(金属+ Si)比接近于1,而金属碳化物,游离碳和氧化物质的混合物形成在膜表面。涂层表面光滑,未发现表面粗糙度对电荷或生物相容性的影响。生物相容性特征与电势/功函数密切相关,表明表面电荷在改善生物相容性,特别是细胞附着在涂层表面上的重要作用。 (TiZrNbTaHf)C涂层中的Si替代Ti或Ta导致表面电荷增加,并具有优异的生物相容性,对于(TiZrNbSiHf)C涂层具有最佳效果。

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