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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Aliphatic polyurethane as a matrix for pH sensors: effects of native sites and added proton carrier on electrical and potentiometric properties
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Aliphatic polyurethane as a matrix for pH sensors: effects of native sites and added proton carrier on electrical and potentiometric properties

机译:脂肪族聚氨酯作为pH传感器的基质:天然位点和添加的质子载体对电和电位特性的影响

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摘要

The potentiometric and impedance characteristics of polymeric membranes, based on aliphatic polyurethane (Tecoflex) as a matrix, are described and interpreted by theory and experiments for H+ and alkali metal ion-sensitive sensors. Both dummy plasticized membranes and proton carrier-loaded membranes can show pH response. The pH response of dummy membranes is due to protonated natural negative sites in the polyurethane matrix. The electrodes with added proton carrier show improved rejection of Li+, Na+, and K+ responses and give useful analytical responses. Optimal performance requires control of negative site concentration by addition of lipophilic salt (e.g. tetraphenylborate derivatives). Impedance analyses show surface-rate semicircles and, depending on the bathing electrolyte solution, appearance of a diffusional Warburg impedance. In addition to these time-dependence surface region effects, changes in the bulk membrane resistance with soaking time can be well correlated with equilibrium water content of plasticized membranes.
机译:基于H +和碱金属离子敏感传感器的理论和实验,描述和解释了以脂肪族聚氨酯(Tecoflex)为基质的聚合物膜的电位和阻抗特性。假增塑膜和质子载有膜都可以显示pH响应。虚拟膜的pH响应归因于聚氨酯基质中的质子化天然负性位点。添加了质子载体的电极表现出改善的Li +,Na +和K +响应排斥性,并提供了有用的分析响应。最佳性能需要通过添加亲脂性盐(例如四苯硼酸酯衍生物)来控制负位点浓度。阻抗分析显示了表面速率半圆,并且根据沐浴电解液的不同,出现了扩散的Warburg阻抗。除了这些与时间相关的表面区域效应外,整体膜电阻随浸泡时间的变化可以与增塑膜的平衡水含量很好地相关。

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