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Analysis of Electrochemical Impedance Spectra Using Phase Angle Symmetry Across Log Frequency

机译:跨对数频率使用相角对称性分析电化学阻抗谱

摘要

A method is disclosed for analysis of the impedance behavior of electrochemical impedance circuits or the Transfer Function for input-output systems, utilizing the symmetry of the phase angle response with the Log of the frequency to allow for determination of the lower frequency half of the impedance response over Log frequency based only on information from the upper half response. The underlying analytical basis for the symmetry of the phase angle and the methods for applying this analysis are applicable to simple R-C circuits, Randle circuits, Constant Phase Element (CPE)-Randles and coating model circuits. Symmetric functions describing the derivative of the phase angle, θ, with respect to the Log of the frequency can be used to determine the circuit elements requiring only the high frequency information. Only knowledge of the high frequency-based response is needed to know how the low frequency range behaves. Capturing high frequency impedance can be done in a few seconds compared with many hours of experimental effort to obtain low frequency behavior, to allow for continuous monitoring of polarization resistance with only a few seconds of data capture required. The method is applicable to numerous sensor applications across a range of disciplines including corrosion focused industries, battery technology and bioelectrochemical fields, and applicable to other Transfer Function analyses that include such as dielectric relaxation and complex modulus.
机译:公开了一种用于分析电化学阻抗电路或输入-输出系统的传递函数的阻抗行为的方法,该方法利用相位角响应与频率的对数的对称性来确定阻抗的下半部分仅基于上半部分响应的信息得出对数频率响应。相角对称性的基本分析基础和进行此分析的方法适用于简单的R-C电路,Randle电路,恒定相元(CPE)-Randles和涂层模型电路。描述相角θ相对于频率的对数的导数的对称函数可用于确定仅需要高频信息的电路元件。仅需了解基于高频的响应,即可了解低频范围的行为。与为获得低频行为而花费大量时间的实验工作相比,捕获高频阻抗可以在几秒钟内完成,从而仅需几秒钟的数据捕获就可以连续监控极化电阻。该方法适用于跨学科的众多传感器应用,包括腐蚀重点行业,电池技术和生物电化学领域,并适用于其他传递函数分析,包括介电弛豫和复数模量。

著录项

  • 公开/公告号US2020300796A1

    专利类型

  • 公开/公告日2020-09-24

    原文格式PDF

  • 申请/专利权人 CLEMSON UNIVERSITY;

    申请/专利号US202016823686

  • 发明设计人 JEREMY L. GILBERT;PIYUSH KHULLAR;

    申请日2020-03-19

  • 分类号G01N27/02;

  • 国家 US

  • 入库时间 2022-08-21 11:24:46

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