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All-solid-state ion-selective silicone rubber membrane electrodes with a new conducting polymer

机译:具有新型导电聚合物的全固态离子选择性硅橡胶膜电极

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摘要

New conducting polymers containing heterocyclic rings with carbazole, ethylene dioxythiophene (EDOT) and benzobisthiazole were synthesized and the characterized by using organic spectroscopic methods. Potentiometric ion-selective membrane electrodes (ISMEs) have been extensively used for ion analysis in clinical, environmental, and industrial fields owing to their wide response range (4 to 7 orders of magnitude), no effect of sample turbidity, fast response time, and ease of miniaturization. Considerable attention has been given to alternative use of room-temperature vulcanizing (RTV)-type silicone rubber (SR) owing to its strong adhesion and high thermal durability. Unfortunately, the high membrane resistance of SR-based ion-selective membranes (ISMs) (2 to 3 higher orders of magnitude compared to those of poly(vinyl chloride)(PVC)-based ones) has significantly restricted their application. Herein, we demonstrate a new method to reduce the membrane resistance via addition of a new conducting polymer into the SR-based ISMs.
机译:合成了具有咔唑,亚乙基二氧噻吩(EDOT)和苯并二噻唑杂环的新型导电聚合物,并通过有机光谱法对其进行了表征。电位离子选择膜电极(ISME)的响应范围广(4至7个数量级),对样品的浊度没有影响,响应时间快,并且对离子分析的应用广泛,已在临床,环境和工业领域广泛用于离子分析。易于小型化。由于常温硫化(RTV)型硅橡胶(SR)具有很强的粘合力和较高的热耐久性,因此备受关注。不幸的是,基于SR的离子选择膜(ISMs)的高膜电阻(比基于聚氯乙烯(PVC)的膜高2到3个数量级)大大限制了它们的应用。在这里,我们演示了一种通过向基于SR的ISM中添加新的导电聚合物来降低膜电阻的新方法。

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