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基于整体式毛细管的离子选择电极。

Monolithic capillary-based ion-selective electrodes.

作者信息

Vigassy Tamás, Huber Christian G, Wintringer Reiner, Pretsch Ernö

机构信息

Laboratorium für Organische Chemie, ETH Hönggerberg, CH-8093 Zürich, Switzerland.

出版信息

Anal Chem. 2005 Jul 1;77(13):3966-70. doi: 10.1021/ac050424h.

Abstract

Poly(styrene-co-divinylbenzene)-based monolithic capillaries of an inner diameter of 200 mum and a length of 2-5 mm have been used to construct Ca2+-, Ag+-, and Na+-selective electrodes. The membranes consist of a solution of ionophore and ion exchanger in bis(2-ethylhexyl) sebacate or 2-nitrophenyl octyl ether, which are used as plasticizers in conventional PVC-based membranes. With capillaries of low porosity, the potentiometric responses down to 10(-8)-10(-9) M solutions do not depend on the composition of the internal solution, which indicates a strong suppression of transmembrane ion fluxes. Thus, no tedious optimization of the inner solution is required with monolith ISEs. The lower detection limits of Ag+- and Ca2+-ISEs are comparable to the best ones obtained earlier with optimized inner solutions. Additionally, a monolithic Na+-selective ISE has been obtained exhibiting a lower detection limit of 3 x 10(-8) M Na+. With monolithic capillaries of higher porosity and fused-silica GC capillaries, the transmembrane flux effects are noticeable but still significantly smaller than with conventional PVC membranes.

摘要

内径为200微米、长度为2 - 5毫米的聚(苯乙烯 - 共 - 二乙烯基苯)整体式毛细管已被用于构建钙离子、银离子和钠离子选择性电极。这些膜由离子载体和离子交换剂在癸二酸二(2 - 乙基己基)酯或2 - 硝基苯基辛醚中的溶液组成,它们在传统的基于聚氯乙烯的膜中用作增塑剂。对于低孔隙率的毛细管,电位响应低至10^(-8) - 10^(-9) M溶液时不依赖于内部溶液的组成,这表明跨膜离子通量受到强烈抑制。因此,整体式离子选择性电极不需要对内部溶液进行繁琐的优化。银离子和钙离子离子选择性电极的较低检测限与早期使用优化内部溶液获得的最佳检测限相当。此外,还获得了一种整体式钠离子选择性离子选择性电极,其较低检测限为3×10^(-8) M钠离子。对于较高孔隙率的整体式毛细管和熔融石英气相色谱毛细管,跨膜通量效应是明显的,但仍比传统聚氯乙烯膜小得多。

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