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首页> 外文期刊>Diamond and Related Materials >Multi-doped diamond like-carbon coatings (DLC-Si/Ag) for biomedical applications fabricated using the modified chemical vapour deposition method
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Multi-doped diamond like-carbon coatings (DLC-Si/Ag) for biomedical applications fabricated using the modified chemical vapour deposition method

机译:使用改良的化学气相沉积方法制造的生物医学应用的多掺杂类金刚石碳涂层(DLC-Si / Ag)

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In this study the Si/Ag-incorporated DLC layers were deposited on titanium alloy (Ti6Al7Nb) using modified radio frequency plasma assisted chemical vapour deposition (RF PACVD) method and examined in terms of chemical, mechanical and biological properties. The modified RF PACVD method allows to dope carbon coatings with silicon and silver during one process and in one chamber. In order to determine the chemical composition, morphology and structure of the manufactured coatings the XPS, FTIR and Raman spectroscopy, as well as SEM observation and EDS analysis were performed. The obtained results were correlated with the biological response of the coatings. The viability of cells in contact with the examined surfaces was evaluated using LIVE/DEAD test and endothelial cells, while the bactericidal activity was assessed using Fscherichia coli. The XPS results showed that the Si content in the films ranged from 1.65 at.% up to 2.94 at.%, while the Ag content was from 1.36 at.% up to 2.09 at.%. SEM observation and EDS analysis proved that with the increasing Ag content, the number of Ag conglomerates increases. FTIR analysis confirmed that the Ag contained in the deposited carbon films is not in metallic state and it creates chemical bonds with silicon and oxygen (Si-O-Ag groups). Mechanical properties were measured using nanoindentation technique. The growing concentration of Ag causes the decrease in the concentration of Si, what ultimately results in decreased hardness, higher bactericidal activity and lower biocompatibility. Results demonstrated that the DLC coating containing 2.94 at.% of Si and 136 at.% of Ag is optimal in terms of medical applications as an antibacterial coating. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,采用改进的射频等离子体辅助化学气相沉积(RF PACVD)方法将掺有Si / Ag的DLC层沉积在钛合金(Ti6Al7Nb)上,并对其化学,机械和生物学特性进行了研究。改进的RF PACVD方法允许在一个过程和一个腔室内用硅和银掺杂碳涂层。为了确定所制造涂层的化学组成,形态和结构,进行了XPS,FTIR和拉曼光谱以及SEM观察和EDS分析。获得的结果与涂层的生物学反应相关。使用LIVE / DEAD测试和内皮细胞评估与被检查表面接触的细胞的活力,同时使用费舍氏大肠杆菌评估杀菌活性。 XPS结果表明,膜中的Si含量为1.65at。%至2.94at。%,而Ag含量为1.36at。%至2.09at。%。 SEM观察和EDS分析证明,随着Ag含量的增加,Ag团块的数量增加。 FTIR分析证实,沉积的碳膜中所含的Ag不是金属状态,它与硅和氧(Si-O-Ag基)形成化学键。使用纳米压痕技术测量机械性能。 Ag浓度的增加导致Si浓度的降低,最终导致硬度降低,较高的杀菌活性和较低的生物相容性。结果表明,就医学应用而言,包含2.94 at。%的Si和136 at。%的DLC涂层是最佳的抗菌涂层。 (C)2016 Elsevier B.V.保留所有权利。

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