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Continuous synthesis of colloidal silver nanoparticles by electrochemical discharge in aqueous solutions

机译:水溶液中电化学放电连续合成胶体银纳米粒子

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This article presents an electrochemical discharge (ECD) method that consists of a combination of chemical methods and electric arc discharges. In the method, 140 V is applied to an Ag electrode from a DC power supply. The arc-discharge between the electrodes produces metallic silver nanoparticles and silver ions in the aqueous solution. Compared with the original arc discharge, this ECD method creates smaller nanoparticles, prevents clumping of the nanoparticles, and shortens the production time. The citrate ions also reduce the silver ions to silver nanoparticles. In addition, the citrate ions cap the surface of the produced silver nanoparticles and the zeta potential increases. In this article, the weight loss of the electrodes and the reduction of silver ions to silver nanoparticles as a function of citrate concentration and electric conductivity of the medium are discussed. Furthermore, the properties of the colloidal silver prepared with ECD are analyzed by UV–Vis spectroscopy, dynamic light scattering, electrophoresis light scattering, and scanning electron microscopy. Finally, a continuous production apparatus is presented for the continuous production of colloidal silver.
机译:本文介绍了一种电化学放电(ECD)方法,该方法由化学方法和电弧放电组成。在该方法中,从直流电源向Ag电极施加140 V电压。电极之间的电弧放电会在水溶液中产生金属银纳米颗粒和银离子。与原始电弧放电相比,这种ECD方法可产生更小的纳米颗粒,防止纳米颗粒结块,并缩短生产时间。柠檬酸根离子还将银离子还原为银纳米颗粒。另外,柠檬酸根离子覆盖所产生的银纳米颗粒的表面,并且ζ电位增加。在本文中,讨论了电极的重量损失和银离子向银纳米颗粒的还原量,其与柠檬酸盐浓度和介质电导率的关系。此外,通过紫外可见光谱,动态光散射,电泳光散射和扫描电子显微镜分析了用ECD制备的胶体银的性质。最后,提出了一种用于连续生产胶体银的连续生产设备。

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