不同电解方式下电沉积Zn-Ni合金薄膜相组成的伏安分析

A. Maizelis
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引用次数: 9

摘要

采用微碱性多配体氨甘氨酸电解质,在恒流、恒电位和线性电位扫描条件下电沉积得到了10 ~ 300nm厚度的锌镍合金薄膜。在碱性氨-甘氨酸溶液中用阳极伏安法测定了膜的相组成。结果表明,随着电解液中镍锌离子浓度的增加、膜厚和电流密度超过极限值,膜中最耐腐蚀的γ-相含量增加。测定了锌-电解质体系中接触交换动力学参数。结果表明,接触交换使镍合金中锌的固溶体薄膜与基体具有较高的附着力。接触交换速率不超过0.2 mA/cm2。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltammetric analysis of phase composition of Zn-Ni alloy thin films electrodeposited under different electrolyze modes
Zinc-nickel alloy films of 10–300 nm thickness were obtained by electrodeposition from a slightly alkaline polyligand ammonia-glycinate electrolyte under conditions of constant current, constant potential, and linear potential scan. The phase composition of the films was determined by the method of anodic voltammetry in an alkaline ammonia-glycinate solution. It is shown that the content of the most corrosion-resistant γ-phase in films increases with the increase in ratio of nickel and zinc ions concentration in the electrolyte, film thickness and current density above the limiting value. The parameters of contact exchange kinetics in the Zn-electrolyte system are determined. It is shown that the film of solid solution of zinc in nickel alloy with high adhesion to the substrate is deposited as a result of contact exchange. The contact exchange rate does not exceed 0.2 mA/cm2.
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