首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Electrochemical methods for the determination of the diffusion coefficient of ionophores and ionophore-ion complexes in plasticized PVC membranes
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Electrochemical methods for the determination of the diffusion coefficient of ionophores and ionophore-ion complexes in plasticized PVC membranes

机译:电化学方法测定增塑PVC膜中离子载体和离子载体的扩散系数

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摘要

The diffusion coefficients of active components in ion-selective membranes have a decisive influence on the life-time and detection limit of the respective ion-selective electrodes, as well as influencing the rate of polarization and relaxation processes of electrically perturbed ion sensors. Therefore, the rational design of mass transport controlled ion-selective electrodes with sub-nanomolar detection limits requires reliable data on the diffusion coefficients. We have implemented electrochemical methods for the quantitative assessment of both the diffusion coefficients of free ionophores and ion-ionophore complexes. The diffusion coefficients of the pH-sensitive chromoionophore ETH 5294 and the calcium-selective ionophore ETH 5234 were determined in plasticized PVC membranes with different PVC to plasticizer ratios. The diffusion coefficient of the free chromoionophore determined by a chronoamperometric method was validated with optical methods for a variety of membrane compositions. The calcium-selective ionophore ETH 5234 was used as a model compound to assess the diffusion coefficient of the ion-ionophore complex calculated from the time required for the complexes to cross a freshly prepared membrane during potentiometric ion-breakthrough experiments. The difference between the diffusion coefficients of the free ionophore ETH 5234 and the ion-ionophore complex was found to be significant and correlated well with the geometry of the respective species.
机译:活性成分在离子选择性膜中的扩散系数对各个离子选择性电极的寿命和检测极限具有决定性影响,并且会影响电干扰离子传感器的极化速率和弛豫过程。因此,具有亚纳摩尔检测极限的质量传输控制的离子选择电极的合理设计需要有关扩散系数的可靠数据。我们已经实施了电化学方法来定量评估游离离子载体和离子-离子载体的扩散系数。在具有不同PVC与增塑剂比率的增塑PVC膜中测定pH敏感的生色团ETH 5294和钙选择生色团ETH 5234的扩散系数。通过计时安培法测定的游离生色团的扩散系数已通过光学方法验证了多种膜成分的有效性。钙选择性离子载体ETH 5234被用作模型化合物,以评估离子-离子载体复合物的扩散系数,该扩散系数是由复合物在电位离子突破实验中穿过新制备的膜所需的时间计算得出的。发现游离离子载体ETH 5234和离子-离子载体络合物的扩散系数之间的差异非常显着,并且与各个物种的几何结构密切相关。

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