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Fractional Diffusion Equations and Equivalent Circuits Applied to Ionic Solutions

机译:分数扩散方程和等效电路应用于离子溶液

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We investigate dilute solutions of different salts (KClO3, K2SO4, and CdCl2H2O) dissolved in Milli-Qdeionized water in the context of the fractional diffusion equations and equivalent circuits. Theexperimental results show that in the low frequency limit the behavior of the impedance is suitabledescribed in terms of the boundary conditons which can be connected to constant phase elements(CPE). In addition, they also indicate that salts with similar characteristics, such as the ionic potentialfor the negative ion, present essentially the same frequency dependence of the impedance in the lowfrequency limit.
机译:我们在分数扩散方程和等效电路的背景下研究了溶解在Milli-Q去离子水中的不同盐(KClO3,K2SO4和CdCl2H2O)的稀溶液。实验结果表明,在低频范围内,根据可以连接到恒定相位元件(CPE)的边界条件,可以适当地描述阻抗的行为。此外,它们还表明具有相似特性的盐(例如负离子的离子电势)在低频范围内呈现出与阻抗基本相同的频率依赖性。

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