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>Electrochemical Impedance Spectroscopy for Ion Sensors with Interdigitated Electrodes: Capacitance Calculations Equivalent Circuit Models and Design Optimizations
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Electrochemical Impedance Spectroscopy for Ion Sensors with Interdigitated Electrodes: Capacitance Calculations Equivalent Circuit Models and Design Optimizations
Electrochemical impedance spectroscopy (EIS) is becoming more and more relevant for the characterization of biosensors employing interdigitated electrodes. We compare four different sensor topologies for an exemplary use case of ion sensing to extract recommendations for the design optimizations of impedimetric biosensors. Therefore, we first extract how sensor design parameters affect the sensor capacitance using analytical calculations and finite element (FEM) simulations. Moreover, we develop equivalent circuit models for our sensor topologies and validate them using FEM simulations. As a result, the impedimetric sensor response is better understood, and sensitive and selective frequency ranges can be determined for a given sensor topology. From this, we extract design optimizations for different sensing principles.
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机译:电化学阻抗谱 (EIS) 与采用叉指电极的生物传感器的表征越来越相关。我们比较了四种不同的传感器拓扑结构,以形成离子传感的示例用例,以提取对阻抗生物传感器设计优化的建议。因此,我们首先使用分析计算和有限元 (FEM) 仿真来提取传感器设计参数如何影响传感器电容。此外,我们为传感器拓扑开发了等效电路模型,并使用 FEM 仿真对其进行验证。因此,可以更好地理解阻抗传感器响应,并且可以为给定的传感器拓扑确定敏感和选择性的频率范围。从中,我们提取了针对不同传感原理的设计优化。
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