Sonoelectrochemical synthesis of silver nanoparticles in polyvinylpyrrolidone solutions

M. Shepida, M. Sozanskyi, Yurii Sukhatskiy, A. Mazur, О. Kuntyi
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Abstract

The results of investigations of the influence of main parameters (surfactant concentration and temperature) on the synthesis of silver nanoparticles (AgNPs) by the sonoelectrochemical method in polyvinylpyrrolidone (PVP) solutions by cyclic voltammetry (CVA) are presented. It is shown that the ultrasonic field (22 kHz) leads to an increase in the anodic and cathodic currents by ~30 %. A scheme of the AgNPs formation has been proposed, which includes the following main processes: 1) dissolution of sacrificial silver anodes at E = 0.2...1.0 V with the formation of [AgPVP]+ complex ions; 2) cathodic and sonochemical reduction of the latter to Ag(0); 3) formation of AgNPs. It has been established that with an increase in PVP concentration from 1 to 4 g·L-1, the anodic and cathodic currents decrease by 40–60 %. The formation rate of AgNPs also decreases. The growth of anodic and cathodic currents and the formation rate of nanoparticles in the range of 20…60 °C corresponds to the diffusion-kinetic action of the temperature factor. The CVA curves practically do not change in time, which indicates the stability of anodic and cathodic processes at prolonged sonoelectrochemical synthesis. The character of the UV-Vis spectra of AgNPs colloidal solutions in PVP with the 405…410 nm absorption maximum is the same in a wide range of nanoparticle concentrations.
聚乙烯吡咯烷酮溶液中纳米银的超声电化学合成
采用循环伏安法(CVA)研究了表面活性剂浓度和温度等主要参数对在聚乙烯吡咯烷酮(PVP)溶液中超声电化学合成纳米银(AgNPs)的影响。结果表明,超声场(22khz)可使阳极和阴极电流增加约30%。本文提出了AgNPs的形成方案,主要包括以下几个过程:1)牺牲银阳极在E = 0.2…1.0 V下溶解,形成[AgPVP]+络合离子;2)后者的阴极和声化学还原为Ag(0);3) AgNPs的形成。结果表明,当PVP浓度从1 g·L-1增加到4 g·L-1时,阳极和阴极电流减小40 ~ 60%。AgNPs的形成速率也随之降低。在20 ~ 60℃范围内,阳极和阴极电流的增长和纳米颗粒的形成速率与温度因子的扩散动力学作用相对应。CVA曲线几乎不随时间变化,说明在长时间超声电化学合成过程中,阳极和阴极过程是稳定的。在广泛的纳米颗粒浓度范围内,AgNPs胶体溶液在PVP中的紫外可见光谱特征是相同的,吸收最大值为405 ~ 410 nm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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