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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Prediction of the carrier-mediated cation flux through polymer inclusion membranes via fundamental thermodynamic quantities: complexation study of bis(dodecyloxy)calix [4] arene-crown-6 with alkali metal cations
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Prediction of the carrier-mediated cation flux through polymer inclusion membranes via fundamental thermodynamic quantities: complexation study of bis(dodecyloxy)calix [4] arene-crown-6 with alkali metal cations

机译:通过基本热力学量预测通过聚合物包合物膜的载流子介导的阳离子通量:双(十二烷基氧基)杯[4]芳烃-冠-6与碱金属阳离子的络合研究

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In a systematic study of alkali metal cation transport through a polymer inclusion membrane (PIM) with calixcrown carriers, a model that postulates diffusion-limited flux successfully describes PIM transport behavior. The model developed herein is based on an ion-pair extraction equilibrium at the PIM interface and provides a convenient tool for the quantitative understanding and interpretation of the transport data. Cation permeability coefficients can be easily determined and used for the quantitiative correlation of fluxes employing a range of aqueous and PIM compositions. The described approach can be readily extended to competitive-transport experiments. Transport of a single cation as well as several cations in a competitive experiment was related to the stability constants of the carrier-metal complexes and the Gibbs energies of ion partitioning between source and membrane phases. Th expected dependence of Cs~(+) ion transport on the Gibbs energy of anion partitioning was validated in a series of 8 univalent anions. Accordingly, the permeability coefficent once determined for a given metal salt, carrier, and PIM provides the basis for the prediction of the transport fluxes under different initial conditions if the thermochemical quantities which govern the complexation and distribution of the metal species into the membrane phase are known or can be estimated. In support of these efforts, a calorimatric study was carried out to obtain thermodynamic parameters for the complexation of bis(dodecyloxy)calix[4]arene-crown-6 with alkali metal ions in acetonitrile.
机译:在碱金属阳离子通过带有杯形冠状载体的聚合物包含膜(PIM)传输的系统研究中,一个假设扩散受限通量的模型成功地描述了PIM传输行为。本文开发的模型基于PIM界面​​处的离子对萃取平衡,并为定量理解和解释传输数据提供了方便的工具。阳离子渗透系数可以很容易地确定,并用于使用一系列水性和PIM组合物的助焊剂的定量相关性。所描述的方法可以很容易地扩展到竞争性运输实验。在竞争性实验中,单个阳离子以及几个阳离子的迁移与载体-金属络合物的稳定性常数以及离子源和膜相之间离子分配的吉布斯能有关。在一系列8种单价阴离子中验证了Cs〜(+)离子迁移对阴离子分配的吉布斯能量的预期依赖性。因此,如果控制金属物种络合和分布到膜相中的热化学量是,则一旦确定了给定金属盐,载体和PIM的渗透系数,便为预测不同初始条件下的传输通量提供了基础。已知或可以估计的。为了支持这些努力,进行了热力学研究,以获得双(十二烷基氧基)杯[4]芳烃-冠-6与乙腈中碱金属离子络合的热力学参数。

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