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Diagnostic of functionality of polymer membrane - based ion selective electrodes by impedance spectroscopy

机译:利用阻抗谱诊断聚合物膜基离子选择电极的功能。

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Electrochemical impedance spectroscopy (EIS) is a powerful tool for the analysis of various electrochemical systems because it allows the separation and characterization of individual kinetic processes. In this paper we investigate whether changes in the EIS characteristics can be used to distinguish between solid-state ISE membrane that have been subjected to physical damage, biofouling or leaching of active components. We conclude that with these relatively simple electronic measurements, we can effectively evaluate the functionality of the ISE membrane; i.e. we can predict whether the sensors are fully functional, in need for calibration or are completely non-functional. We believe this could form the basis of a simple but effective diagnostic tool for probing the condition of remotely deployed ISEs in widely distributed chemo-sensor networks (e.g. for environmental monitoring) and for enhancing the reliability of these devices. Our ultimate goal is to implement such tools in place of conventional approaches to ISE testing like calibration with standard solutions, which require the integration of complex and costly fluidics.
机译:电化学阻抗谱(EIS)是分析各种电化学系统的强大工具,因为它可以分离和表征各个动力学过程。在本文中,我们研究了EIS特性的变化是否可用于区分受到物理损坏,生物污染或活性成分浸出的固态ISE膜。我们得出结论,通过这些相对简单的电子测量,我们可以有效地评估ISE膜的功能。即我们可以预测传感器是否功能齐全,需要校准或完全不起作用。我们认为,这可以构成一种简单而有效的诊断工具的基础,以检测分布广泛的化学传感器网络中远程部署ISE的状况(例如用于环境监测)并增强这些设备的可靠性。我们的最终目标是代替传统的ISE测试方法(例如,使用标准解决方案进行校准)来实现此类工具,而这些方法需要集成复杂且昂贵的流体技术。

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