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Electric impedance of aqueous KCl and NaCl solutions: Salt concentration dependence on components of the equivalent electric circuit

机译:KCl水溶液和NaCl溶液的电阻抗:盐浓度依赖于等效电路的组分

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In this work, we report an investigation of electrical impedance behavior of dilute aqueous solutions of potassium chloride KCI((aq)) and sodium chloride NaCI((aq) ) (0.1 to 0.7 mMol/L) in the frequencies ranging from 10.0 mHz to 10.0 MHz. The real and imaginary parts of the complex electrical impedance are obtained by using the Electrical Impedance Spectroscopy (EIS) technique. The amplitude of the AC applied voltage is 20.0 mV. The complex electrical impedance results of the solutions are modeled by using an equivalent electrical circuit with a good agreement with the experimental data. This proposed circuit is composed by three sections connected in series. The first one is composed by a parallel RC associated with bulk effects, the second section is composed by a capacitor in parallel to a constant phase element (CPE) associated with the electric double-layer and the last one section composed by a resistance in series with an inductor associated with resistances of the electrical contacts and with parasites inductances of the connected cables. The components of the equivalent circuit are investigated as a function of salt concentration. As additional results, the electrical conductivity and complex permittivity of the samples are calculated and the electrical properties of the solutions are investigated as a function of kind of cations. For both K+ and Na+ cations, the bulk effects are well described by Debye model. However, the electric double-layer shows a higher resistance associated with cation Na+ than that associated to cation K+. Even for very low concentrations of salt, for both salts, it was observed an inverse relationship between impedance and salt concentration. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们报告了在10.0MHz至10.0MHz至10.0MHz的频率中稀释氯化钾KCI((aq))和氯化钠水溶液((aq))(0.1至0.7mmol / l)的稀释水溶液的电阻抗行为的研究10.0 MHz。通过使用电阻抗谱(EIS)技术获得复杂电阻抗的实数和虚部。 AC施加电压的幅度为20.0 mV。通过使用具有良好协议的等效电路与实验数据吻合良好的相应电路,建模了解决方案的复杂电阻结果。该提出的电路由串联连接的三个部分组成。第一个由与批量效应相关的并行RC组成,第二部分由与电动双层相关联的恒相元件(CPE)的电容器并联组成,并且由串联电阻组成的恒相元件(CPE)。利用与电触点的电阻相关联的电感以及连接电缆的寄生虫电感。作为盐浓度的函数研究了等效电路的组分。作为额外的结果,计算样品的电导率和复杂介电常数,并作为阳离子种类的函数研究了溶液的电性能。对于K +和Na +阳离子,散装效果是通过Debye模型进行了很好的描述。然而,电双层显示与阳离Na +相关的较高抗性,而不是与阳离子K +相关的耐受。即使对于两种盐,均匀浓度的盐,也观察到阻抗和盐浓度之间的反比关系。 (c)2017年Elsevier B.V.保留所有权利。

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