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首页> 外文期刊>Analytica chimica acta >Physicochemical understanding of the selectivity at an ion selective electrode of the liquid membrane type and relation between the selectivity and distribution ratios in the ion-pair extraction
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Physicochemical understanding of the selectivity at an ion selective electrode of the liquid membrane type and relation between the selectivity and distribution ratios in the ion-pair extraction

机译:对液膜型离子选择电极的选择性以及离子对萃取中选择性与分布比之间关系的理化理解

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The potentials, E-ISE, and selectivity coefficients, K-ij(pot), at an ion selective electrode (ISE) of liquid membrane type were related quantitatively to distribution ratios, D, of the primary ion, i(z), and the interfering ion, j(z), between an aqueous, W, and an organic, O, solutions, taking into account that all the E-ISE, K-ij(pot) and D terms could be expressed physicochemically by using standard Galvani potential differences, E-o, (or standard free energies, Delta G(tr)(o)) for transfers of i(z) and j(z) from water, W, to the ISE membrane, M, or organic solution, O, stability constants, K-st, of complexes of i(z) and j(z) with an ionophore in M or O and formation constants of ion-pairs, K-ip, of i(z)- and j(z)-species with coexisting counter ions in M or O. The equations theoretically derived for K-ij(pot) indicated that the K-ij(pot) in Nicolsky-Eisenman equation was a simple function of D in i(z) and j(z) when K-ij(pot) at an ISE was determined under the conditions recommended by IUPAC for the separate solution and the fixed solution methods. Though the derived equations were verified experimentally by employing a Na+-ISE composed of a nitrobenzene membrane containing dibenzo-18-crown-6 as an example, they are considered to be generally applicable to the estimation of K-ij(pot) at liquid membrane type ISE, (C) 1998 Elsevier Science B.V. All rights reserved. [References: 29]
机译:液膜型离子选择电极(ISE)的电势E-ISE和选择性系数K-ij(pot)与一次离子i(z)和考虑到所有E-ISE,K-ij(pot)和D项都可以使用标准Galvani物理化学表达,因此在水性溶液W和有机溶液O之间的干扰离子j(z) i(z)和j(z)从水W到ISE膜M或有机溶液O的转移的电势差Eo(或标准自由能Delta G(tr)(o)), i(z)和j(z)与离子载体在M或O中的稳定常数K-st和i(z)-和j(z)-的离子对K-ip的形成常数M或O中具有共存反离子的分子。从理论上推导K-ij(pot)的方程表明,Nicolsky-Eisenman方程中的K-ij(pot)是i(z)和j(z)中D的简单函数)在推荐条件下确定ISE的K-ij(pot)时IUPAC提供了单独的解决方案和固定解决方案的方法。尽管通过以包含二苯并-18-冠-6的硝基苯膜组成的Na + -ISE为例,对导出的方程进行了实验验证,但认为它们通常可用于估算液膜的K-ij(pot) ISE型,(C)1998 Elsevier Science BV保留所有权利。 [参考:29]

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