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The influence of platinum on the performance of silver-platinum anti-bacterial coatings

机译:铂对银铂抗菌涂层性能的影响

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Anti-bacterial silver coatings were deposited on thermally sensitive polymeric substrates using a combination of magnetron sputtering and neutral atom beam (Saddle Field) plasma sources. The anti-bacterial activity of silver is dependent on the release of Ag~+ ions, which act by displacing other essential metal ions such as Ca~(2+) or Zn~(2+). This study reports some initial electrochemical experiments intended to evaluate the use of platinum to enhance the release of silver ions from the silver coating. In the galvanic series in seawater silver is more active than platinum and therefore probably enhances Ag~+ ion formation through galvanic action when the two metals are in electrical contact. In order to evaluate this several electrochemical methods were employed using magnetron target samples as working electrodes. Cyclic voltammetric, open circuit potential measurements and potential step chronoaniperometric) experiments were performed on several silver-platinum alloys containing from 0.5 percent to 3.0 percent Pt and on a pure silver target electrode. In the case of the chronoaniperometric measurements, the resulting current-time curves demonstrated that Ag~+ formation was enhanced with platinum addition by up to 100 percent. Results of this preliminary work are discussed with reference to various reactions that can occur on the surface of silver in chloride-containing environments.
机译:使用磁控溅射和中性原子束(鞍场)等离子体源的组合,将抗菌银涂层沉积在热敏聚合物基材上。银的抗菌活性取决于Ag〜+离子的释放,Ag〜+离子通过置换其他基本金属离子(例如Ca〜(2+)或Zn〜(2+))起作用。这项研究报告了一些初步的电化学实验,旨在评估使用铂增强银涂层中银离子的释放。在海水的电化系列中,银比铂活泼,因此,当两种金属电接触时,银可能通过电化作用增强了Ag〜+离子的形成。为了评估这一点,采用了几种使用磁控管目标样品作为工作电极的电化学方法。在几种含0.5%至3.0%Pt的银-铂合金和纯银靶电极上进行了循环伏安法,开路电势测量和电势阶跃计时时间法。在计时电流法测量的情况下,所得的电流-时间曲线表明,添加铂时,Ag〜+的形成增加了100%。参考含氯环境中银表面可能发生的各种反应,讨论了这项初步工作的结果。

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