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Antibacterial Ag/a-C nanocomposite coatings: The influence of nano-galvanic a-C and Ag couples on Ag ionization rates

机译:抗菌AG / A-C纳米复合涂料:纳米电镀A-C和AG对Ag电离率的影响

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摘要

Biofilm formation has been pointed as a major concern in different industrial applications, namely on biomedical implants and surgical instruments, which has prompted the development of new strategies for production of efficient antimicrobial surfaces. In this work, nano âgalvanic couples were created to enhance the antibacterial properties of silver, by embedding it into amorphous carbon (a-C) matrix. The developed Ag/a-C nanocomposite coatings, deposited by magnetron sputtering, revealed an outstanding antibacterial activity against S.epidermidis, promoting a total reduction in biofilm formation with no bacteria counts in all dilution. The open circuit potential (OCP) tests in 0.9% NaCl confirmed that a-C shows a positive OCP value, in contrast to Ag coating, thus enhancing the ionization of biocidal Ag+ due to the nano-galvanic couple activation. This result was confirmed by the inductively coupled plasma-optical emission spectroscopy (ICP-OES), which revealed a higher Ag ionization rate in the nanocomposite coating in comparison with the Ag coating. The surface of Ag/a-C and Ag coatings immersed in 0.9% NaCl were monitored by scanning electron microscopy (SEM) over a period of 24 hours, being found that the Ag ionization determined by ICP-OES was accompanied by an Ag nanoparticles coalescence and agglomeration in Ag/a-C coating.
机译:生物膜形成已被指出作为不同的工业应用中的主要问题,即在生物医学植入物和外科手术器械上,这促使促进了生产高效抗微生物表面的新策略。在这项工作中,通过将其嵌入无定形碳(A-C)基质中,产生纳米βGalvanic伴侣以增强银的抗菌性质。通过磁控溅射沉积的开发的Ag / A-C纳米复合涂层揭示了针对S.Pidermidis的出色的抗菌活性,促进生物膜形成的总减少,没有细菌在所有稀释中都计数。 0.9%NaCl中的开路电位(OCP)测试证实A-C与Ag涂层相比,A-C显示阳性 ocp 值,从而提高了由于纳米电镀耦合激活而增强生物杀菌效应的电离。电感耦合等离子体光发射光谱(ICP-OES)证实了该结果,其揭示了与Ag涂层相比纳米复合涂层中的较高的Ag电离速率。通过扫描电子显微镜(SEM)在24小时内浸入0.9%NaCl中浸没在0.9%NaCl中的Ag / Ac和Ag涂层的表面,发现通过ICP-OES测定的Ag电离伴随着Ag纳米粒子聚结和附聚在Ag / Ac涂层中。

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