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Generalized Distribution of Relaxation Times Analysis for the Characterization of Impedance Spectra

机译:表征阻抗谱的弛豫时间分析的广义分布

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摘要

Impedance spectroscopy is a universal nondestructive tool for the analysis of the polarization behavior of electrochemical systems in frequency domain. As an extension and enhancement of the standard impedance spectroscopy, the distribution of relaxation times (DRT) analysis was established, where the spectra are transferred from frequency into time domain. The DRT helps to analyze complex impedance spectra by identifying the number of polarization processes involved without prior assumptions and by separating and quantifying their single polarization contributions. The DRT analysis, as introduced in literature, claims to be a model-free approach for the characterization of resistive-capacitive systems. However, a data preprocessing step based on impedance models is often required to exclude non-resistive-capacitive components off the measured impedance spectra. The generalized distribution of relaxation times (GDRT) analysis presented in this work is dedicated to complex superposed impedance spectra that include ohmic, inductive, capacitive, resistive-capacitive, and resistive-inductive effects. The simplified work flow without preprocessing steps leads to a reliable and reproducible DRT analysis that fulfills the assumption of being model-free. The GDRT is applicable for the analysis of electrochemical, electrical, and even for non-electrical systems. Results are shown for a lithium-ion battery, a vanadium redox flow battery, and for a double-layer capacitor.
机译:阻抗谱是一种通用的非破坏性工具,用于分析电化学系统在频域中的极化行为。作为标准阻抗谱的扩展和增强,建立了弛豫时间(DRT)分析的分布,其中将频谱从频率转移到时域。 DRT通过在没有事先假设的情况下识别涉及的极化过程的数量,并通过分离和量化其单个极化贡献来帮助分析复杂的阻抗谱。正如文献中所介绍的那样,DRT分析声称是一种无模型的方法来表征电阻电容系统。但是,通常需要基于阻抗模型的数据预处理步骤,以将非电阻电容成分从测量的阻抗谱中排除。这项工作中呈现的广义弛豫时间分布(GDRT)分析专用于复杂的叠加阻抗谱,其中包括欧姆,电感,电容,阻容和阻感效应。无需预处理步骤的简化工作流程可实现可靠且可重复的DRT分析,从而满足无模型的假设。 GDRT适用于电化学,电气甚至非电气系统的分析。显示了锂离子电池,钒氧化还原液流电池和双层电容器的结果。

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