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Evaluation of Egorov's Improved Separate Solution Method for Determination of Low Selectivity Coefficients by Numerical Simulation

机译:Egorov改进的单独求解方法用于数值模拟确定低选择性系数的评估

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摘要

The group of Egorov has recently proposed an elegant method to determine unbiased selectivity coefficients of ion-selective electrodes (Egorov et al. Anal. Chem. 2014, 86, 3693). Once the electrode is exposed to a solution containing only interfering ions, the time-dependent experimental selectivity coefficients are plotted as a function of the inverse fourth root of time and extrapolated to zero. The principal assumption of the approach is the progression of the diffusion layer in the membrane phase with square root of time. This letter critically evaluates the usefulness of this methodology by finite element analysis. The results suggest that the improvement of observed selectivity values are highly significant for an initially uniform distribution of primary ions across the membrane, strongly supporting the methodology. When strong inward ion fluxes of primary ions are present instead, a modification of the method by extrapolation of logarithmic selectivity coefficients appears to give the best results.
机译:Egorov小组最近提出了一种优雅的方法来确定离子选择电极的无偏选择性系数(Egorov等人,Anal。Chem。2014,86,3693)。一旦电极暴露于仅包含干扰离子的溶液中,随时间变化的实验选择性系数将根据时间的倒数第四根进行绘制,并外推至零。该方法的主要假设是扩散层在膜相中具有时间平方根的进程。这封信通过有限元分析来严格评估这种方法的有效性。结果表明,观察到的选择性值的提高对于一次离子在整个膜上的初始均匀分布非常重要,这极大地支持了该方法。相反,当存在强的一次离子的内向离子通量时,通过对数选择性系数的外推法对方法进行的修改似乎可以提供最佳结果。

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