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Influence of the Silver Nanoparticles (AgNPs) Formation Conditions onto Titanium Dioxide (TiO2) Nanotubes Based Electrodes on Their Impedimetric Response

机译:银纳米颗粒(AgNPs)形成条件对基于二氧化钛(TiO2)纳米管的电极的阻抗响应的影响

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摘要

This paper presents the comparison of the effects of three methods of production of silver spherical and near-spherical nanoparticles (AgNPs) on the titanium dioxide nanotubes (TNT) base: cyclic voltammetry, chronoamperometry, and sputter deposition. It also evaluates the influence of silver nanoparticles on the electrochemical properties of the developed electrodes. The novelty of this research was to fabricate regular AgNPs free of agglomerates uniformly distributed onto the TNT layer, which has not been accomplished with previous attempts. The applied methods do not require stabilizing and reducing reagents. The extensive electrochemical characteristic of AgNP/TNT was performed by open circuit potential and electrochemical impedance spectroscopy methods. For AgNPs/TNT obtained by each method, the impedance module of these electrodes was up to 50% lower when compared to TNT, which means that AgNPs enabled more efficient electron transfer due to the effective area increase. In addition, the presence of nanoparticles increases the corrosion resistance of the prepared electrodes. These substrates can be used as electrochemical sensors due to their high electrical conductivity, and also as implants due to the antibacterial properties of both the TNT and AgNPs.
机译:本文比较了三种生产球形银和近球形纳米银(AgNPs)的方法对二氧化钛纳米管(TNT)的影响:循环伏安法,计时电流法和溅射沉积。它还评估了银纳米颗粒对已开发电极的电化学性能的影响。这项研究的新颖之处在于,它可以制造出无规则的AgNP,而没有聚集在TNT层上的团块,这在以前的尝试中还没有实现。所应用的方法不需要稳定剂和还原剂。 AgNP / TNT的广泛的电化学特性是通过开路电势和电化学阻抗谱方法进行的。对于通过每种方法获得的AgNPs / TNT,与TNT相比,这些电极的阻抗模块降低了50%,这意味着AgNPs由于有效面积增加而实现了更有效的电子转移。另外,纳米颗粒的存在增加了所制备电极的耐腐蚀性。这些基板由于其高电导率而可用作电化学传感器,并且由于TNT和AgNP的抗菌特性也可用作植入物。

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