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Combinatorial Approach Towards Materials for Optical Ion Sensors

机译:光学离子传感器材料的组合方法

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We report on the results of a combinatorial approach for the optimization of materials for use in fluorescent sensing of metal ions, primarily alkali ions. The sensor materials studied are composed of a hydrogel containing an emulsion of a lipophilic plasticizer, the latter incorporating an ion carrier and a polarity-sensitive dye that acts as a fluorescent reporter probe. The carriers were varied, and the response of all sensor materials to 24 electrolyte solutions was studied using a microtiterplate format, the sensor layers being deposited on the bottom of the wells. The method is shown to enable fast screening of ion carrier-based sensors with respect to sensor composition, response time, signal change, and selectivity.
机译:我们报告了一种组合方法的结果,该方法可优化用于金属离子(主要是碱金属离子)的荧光传感的材料。所研究的传感器材料由含有亲脂性增塑剂乳液的水凝胶组成,后者包含离子载体和极性敏感染料,可充当荧光报告探针。改变载体,并使用微量滴定板形式研究所有传感器材料对24种电解质溶液的响应,传感器层沉积在孔的底部。示出了该方法使得能够在传感器组成,响应时间,信号变化和选择性方面快速筛选基于离子载体的传感器。

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