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非增塑甲基丙烯酸-丙烯酸离子选择性膜的离子传输和扩散系数

Ion-transport and diffusion coefficients of non-plasticised methacrylic-acrylic ion-selective membranes.

作者信息

Heng Lee Yook, Toth Klara, Hall Elizabeth A H

机构信息

Institute of Biotechnology, University of Cambridge, Tennis Court Road, Cambridge CB2 1QT, UK.

出版信息

Talanta. 2004 May 10;63(1):73-87. doi: 10.1016/j.talanta.2003.12.051.

Abstract

The ion-transport behaviour of methacrylic-acrylic-based polymers for ion-selective electrode (ISE) membranes was investigated by a spectrophotometric method to determine the apparent diffusion coefficient. By observing the degree of deprotonation of the chromoionophore or chromogenic ionophore, the extent of penetration of cations into the polymer films was determined. The transport of the cations into the optode films depended on the stoichiometry of complexation by the ionophores. The apparent diffusion coefficients, estimated from the deprotonation data were of the order of 10(-12) to 10(-11)cm(2)s(-1). These values indicate that the apparent ion mobility in the methacrylic-acrylic ISE membranes is approximately a thousand times lower than that in plasticised PVC ISE membranes. For some ionophores, the value of the apparent diffusion coefficient could be modulated according to the ionophore content in the membrane and the data obtained for a calixarene containing membrane were tested against a model for facilitated diffusion with chained carriers. The data did not fit a model where intramolecular diffusion was limiting, but were consistent with a first-order rate-limiting mechanism involving an intermediate 1:2 complex between ion and ionophore. In this instance, the lowest values for D(app) were thus not necessarily obtained for lowest ionophore loading and in the range examined, a trend of decreasing D(app) with increasing ionophore was noted.

摘要

采用分光光度法研究了用于离子选择电极(ISE)膜的甲基丙烯酸 - 丙烯酸基聚合物的离子传输行为,以确定表观扩散系数。通过观察发色离子载体或显色离子载体的去质子化程度,确定阳离子渗透到聚合物膜中的程度。阳离子向光极膜中的传输取决于离子载体络合的化学计量。根据去质子化数据估算的表观扩散系数约为10^(-12)至10^(-11)cm²s^(-1)。这些值表明,甲基丙烯酸 - 丙烯酸ISE膜中的表观离子迁移率比增塑PVC ISE膜中的低约一千倍。对于某些离子载体,表观扩散系数的值可根据膜中离子载体的含量进行调节,并且针对含杯芳烃膜获得的数据根据链式载体促进扩散模型进行了测试。数据不符合分子内扩散受限的模型,但与涉及离子和离子载体之间中间体1:2络合物的一级速率限制机制一致。在这种情况下,因此不一定在最低离子载体负载量时获得D(app)的最低值,并且在所研究的范围内,注意到随着离子载体增加D(app)降低的趋势。

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