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Effect of nickel on copper anode passivation in a copper sulfate solution by electrochemical impedance spectroscopy

机译:镍对硫酸铜溶液中铜阳极钝化的电化学阻抗谱影响

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Electrochemical Impedance Spectroscopy (EIS) was applied on Cu-Ni samples passivated in a specially designed flat electrochemical cell which was heated at 60 degrees C. The electrolyte consisted of 160 g l(-1)H(2)SO(4), 40 g l(-1) Cu2+ and 0, 10, 20, 30 or 40 g l(-1) Ni2+ and the copper anodes contained nickel ranging from 0 w% to 10 w%. The oxygen content of the anodes and the electrolyte was also measured. An AC excitation signal of 10 mV and of 1mHz 100 MHz frequency was applied at the open circuit potential as well as at a passivation potential, the latter having been determined previously. The results indicate that nickel ion additions to the electrolyte increased the resistance of the electrolyte and altered the porosity, thickness and constituents of the passivation layer formed. The equivalent circuit models generated from the data acquired during the EIS experiments and the values for the electrical components were in the predicted range. The results are supported by supplementary XRD and SEM findings.
机译:将电化学阻抗谱(EIS)应用于在特殊设计的平面电化学电池中钝化的Cu-Ni样品,该电池在60°C的温度下加热。电解质包括160 gl(-1)H(2)SO(4),40 gl (-1)Cu2 +和0、10、20、30或40 gl(-1)Ni2 +,铜阳极包含的镍含量为0 w%至10 w%。还测量了阳极和电解质的氧含量。在开路电势和钝化电势上施加10 mV和1mHz 100 MHz频率的AC激励信号,后者已事先确定。结果表明,向电解质中添加镍离子增加了电解质的电阻,并改变了形成的钝化层的孔隙率,厚度和组成。根据在EIS实验期间获取的数据生成的等效电路模型以及电气元件的值在预测范围内。 XRD和SEM补充结果支持了该结果。

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