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Basic response principles of voltammetric ion-selec-tive solvent polymeric membrane sensors

机译:伏安离子选择溶剂聚合物膜传感器的基本响应原理

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Potentiometric and optical sensors that make use of highly selective, lipophilic ionophores embedded in a plasticized polymeric environment are now well understood and established. This paper discusses how these membranes may be optimally used in a voltammetric or pulsed amperometric transduction mode. It is shown that the inner membrane phase boundary region should preferably be polarizable, unlike some of the classical voltammetry work on liquid-liquid interfaces. In addition, the materials properties of plasticized PVC membranes will reduce ion mobilities int he organic phase significantly, which will reduce stir effects of the sample and simplify the theoretical response models for these types of sensors. Results are shown on ionophorefree PVC membranes doped with a lipophilic salt.
机译:现在充分理解和建立利用嵌入塑化的聚合物环境中具有高选择性,脂质离子的电位和光学传感器。本文讨论了这些膜可以如何在伏安或脉冲电流转导模式下最佳地使用。结果表明,内膜相位边界区域应该优选地是可极化的,与一些经典伏安法在液体液体界面上工作。此外,塑化的PVC膜的材料性质将显着降低离子迁移性Int的Int Oll有机相,这将减少样品的搅拌效果,并简化这些类型的传感器的理论反应模型。结果显示在掺杂有亲脂性盐的离子晕免疫PVC膜上。

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