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Schiffs Bases and Crown Ethers as Supramolecular Sensing Materials in the Construction of Potentiometric Membrane Sensors

机译:Schiff碱和冠醚作为电位计膜传感器构建中的超分子传感材料

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摘要

Ionophore incorporated PVC membrane sensors are well-established analytical tools routinely used for the selective and direct measurement of a wide variety of different ions in complex biological and environmental samples. Potentiometric sensors have some outstanding advantages including simple design and operation, wide linear dynamic range, relatively fast response and rational selectivity. The vital component of such plasticized PVC members is the ionophore involved, defining the selectivity of the electrodes' complex formation. Molecular recognition causes the formation of many different supramolecules. Different types of supramolecules, like calixarenes, cyclodextrins and podands, have been used as a sensing material in the construction of ion selective sensors. Schiff's bases and crown ethers, which feature prominently in supramolecular chemistry, can be used as sensing materials in the construction of potentiometric ion selective electrodes. Up to now, more than 200 potentiometric membrane sensors for cations and anions based on Schiff's bases and crown ethers have been reported. In this review cation binding and anion complexes will be described. Liquid membrane sensors based on Schiff's bases and crown ethers will then be discussed.
机译:结合了离子载体的PVC膜传感器是公认的分析工具,通常用于选择性和直接测量复杂的生物和环境样品中的各种不同离子。电位传感器具有一些突出的优点,包括设计和操作简单,线性动态范围宽,响应速度较快以及选择性合理。这种增塑的PVC构件的重要组成部分是所涉及的离子载体,它决定了电极复合物形成的选择性。分子识别导致许多不同的超分子的形成。不同类型的超分子,如杯芳烃,环糊精和豆荚已被用作离子选择性传感器的传感材料。 Schiff的碱和冠醚在超分子化学中具有突出的特征,可以用作电位离子选择性电极构建中的传感材料。迄今为止,已经报道了基于Schiff碱和冠醚的200多种用于阳离子和阴离子的电位计膜传感器。在这篇综述中,将描述阳离子结合和阴离子络合物。然后将讨论基于席夫碱和冠醚的液膜传感器。

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