循环伏安法研究银在低氰溶液中的高速电沉积和溶解

IF 2.3 Q3 ELECTROCHEMISTRY
Bo Zheng, L. Wong, L. Wu, Zhongxiu Chen
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引用次数: 10

摘要

采用循环伏安法研究了游离氰化物(<10 g/L KCN)含量远低于碱性银电解质的电化学过程。研究了KAg(CN)2、KCN和KNO3电解质的电化学行为以及溶液pH对电沉积和溶解过程的影响。此外,还提出了适合高速低氰银电沉积的工作条件。银离子浓度和氰化物离子浓度对电极极化和沉积速率均有显著影响。高银低KCN溶液可使银电沉积的起始电位向正电位偏移。银浓度越高,沉积速率越快。除了保持溶液的高导电性外,KNO3可能有助于降低在高银浓度下银电沉积所需的工作电流密度,尽管以减慢电沉积速率为代价。银的溶解包括一个限制步骤,反应速率取决于游离氰化物离子的量。并比较了低氰溶液沉积的银膜与常规高氰溶液沉积的银膜的表面和材料特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyclic Voltammetric Study of High Speed Silver Electrodeposition and Dissolution in Low Cyanide Solutions
The electrochemical processes in solutions with a much lower amount of free cyanide (<10 g/L KCN) than the conventional alkaline silver electrolytes were first explored by using cyclic voltammetry. The electrochemical behavior and the effect of KAg(CN)2, KCN, and KNO3 electrolytes and solution pH on the electrodeposition and dissolution processes were investigated. Moreover, suitable working conditions for high speed, low cyanide silver electrodeposition were also proposed. Both silver and cyanide ions concentration had significant effects on the electrode polarization and deposition rate. The onset potential of silver electrodeposition could be shifted to more positive values by using solutions containing higher silver and lower KCN concentration. Higher silver concentration also led to higher deposition rate. Besides maintaining high conductivity of the solution, KNO3 might help reduce the operating current density required for silver electrodeposition at high silver concentration albeit at the expense of slowing down the electrodeposition rate. The silver dissolution consists of a limiting step and the reaction rate depends on the amount of free cyanide ions. The surface and material characteristics of Ag films deposited by low cyanide solution are also compared with those deposited by conventional high cyanide solution.
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