溶液离子迁移率对有机涂层阻抗响应的影响

R. Duarte, A. Castela, M. Ferreira
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引用次数: 5

摘要

采用电化学阻抗谱法(EIS)研究了PVC(聚氯乙烯)塑溶胶薄膜在电解液中的性能,并采用一次常数和两次时间常数等效电路对数据进行了拟合。通常,这些薄膜的电学性能最好由第二电路来表示。第一个时间常数与膜电容有关,与浸入溶液离子迁移率无关,而第二个时间常数与膜孔内的电荷分离有关,与阳离子迁移率有关。由于这两个时间常数的物理意义是公认的,因此在分析结果时应考虑到它们在EIS测量中的存在。电化学阻抗谱(EIS)可用于评价涂层。得到的结果可以用一个等效电路来解释,这个等效电路由一个电阻(溶液电阻)和一个电容器(涂层电容)组成,并联一个电阻(孔隙电阻)。通常,完整涂层的结果在高频区域显示第二个时间常数。这些结果可能有几种解释,即水-聚合物复合响应、涂层孔结构、膜上发生的电荷分离、水入口引起的涂层弛豫、涂层的高非均质性和瞬态不稳定性(早期吸水)、吸附电解质与聚合物之间的相互作用(偶极子弛豫)以及涂层内外部分的差异
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Influence of the Solution Ionic Mobility on the Impedance Response of Organic Coatings
PVC (polyvinylchloride) Plastisol films immersed in electrolyte were studied by Electrochemical Impedance Spectroscopy (EIS) and the data were fitted using one-time constant and two time constant equivalent circuits. Very often the electrical behavior of these films is better represented by the second circuit. The first time constant can be associated with the film capacitance and is independent of the immersion solution ionic mobility, whereas the second one could be related with charge separation inside the film pores and depends on cation mobility. Since the physical meaning of the two time constants is acknowledged their presence in EIS measurements should be taken into account when the results are analyzed. Electrochemical Impedance Spectroscopy (EIS) can be used to evaluate coatings. The results obtained can be interpreted with an equivalent circuit composed by a resistor (solution resistance) followed by a capacitor (coating capacitance) in parallel with a resistor (poreresistance).FrequentlytheEISresultsforanintactcoating show a second time constant in the high frequency region. Several interpretations of these results are possible, namely, water-polymer composite response, coating pore structure, charge separation occurring at the film, coating relaxation given by the water entrance, high heterogeneity of the coating and transient instability (early water uptake), interaction between adsorbed electrolyte and the polymer (dipole relaxation) and difference between the coating outer and inner parts
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来源期刊
ECS Electrochemistry Letters
ECS Electrochemistry Letters ELECTROCHEMISTRY-MATERIALS SCIENCE, MULTIDISCIPLINARY
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