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EIS-in situ characterization of anodic films on antimony and lead-antimony alloys

机译:锑和铅-锑合金上阳极膜的EIS原位表征

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摘要

The behaviour of antimony as a function of the concentration of both H_2SO_4 and HSO_4~- ions, and the electrode rotation rate was studied by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). The rate of antimony dissolution is accelerated with the addition of HSO_4~- ions and with the increasing electrode rotation rate. Impedance measurements of antimony in the region of film formation, and lead and lead-antimony alloys in the region of PbO formation showed that the dissolution rate is controlled by the diffusion through the oxide layer. The diffusion coefficients (D) for protons in the case of antimony dissolution, and for oxygen ions in the case of lead and alloys, were estimated. Electric and dielectric properties of the anodic surface layer of the lead-antimony alloys are significantly influenced by the antimony content.
机译:通过循环伏安法(CV)和电化学阻抗谱(EIS)研究了锑的行为与H_2SO_4和HSO_4〜-离子浓度的关系以及电极的旋转速度。添加HSO_4-离子和增加电极旋转速度可加快锑的溶解速度。薄膜形成区域中锑的阻抗测量以及PbO形成区域中铅和铅-锑合金的阻抗测量表明,溶解速率受通过氧化物层的扩散控制。估算了锑溶解时质子的扩散系数(D),铅和合金中氧离子的扩散系数(D)。铅-锑合金的阳极表面层的电和介电性能受锑含量的影响很大。

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