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Rational design of all-solid-state ion-selective electrodes and reference electrodes

机译:全固态离子选择电极和参比电极的合理设计

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摘要

Potentiometric sensing, which requires the use of ion-selective electrodes (ISEs) and reference electrodes, is used to determine electrochemically the concentration of target ions in a variety of chemical environments. In view of the need for more affordable and portable analytical devices with small sample volumes, all-solid-state ISEs and reference electrodes, in which a solid contact is used as ion-to-electron transducer, are highly desirable. This review describes how all-solid-state ISEs and reference electrodes function and presents important aspects that should be considered when designing such sensors for specific applications. Approaches to improving reproducibility, the stability of the emf response, lowering detection limits, and novel sensor designs are discussed along with specific examples from the recent literature. Emphasis is placed on the ion-to-electron transduction mechanism and the development of new solid contact materials, with a particular view to miniaturized ion-sensing devices with low cost and calibration-free sensing. (C) 2015 Elsevier B.V. All rights reserved.
机译:电位传感需要使用离子选择电极(ISE)和参比电极,用于电化学确定各种化学环境中目标离子的浓度。考虑到需要更便宜,样品量较小的便携式分析设备,非常需要使用固态触点作为离子-电子换能器的全固态ISE和参比电极。这篇综述描述了全固态ISE和参比电极的功能,并介绍了为特定应用设计此类传感器时应考虑的重要方面。讨论了提高重现性,电动势响应的稳定性,降低检测限和新颖的传感器设计的方法,以及来自最近文献的具体示例。重点放在离子到电子的转导机理和新型固体接触材料的开发上,尤其着眼于低成本,无需校准的小型化离子传感设备。 (C)2015 Elsevier B.V.保留所有权利。

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