Electrochemical Response of Alkaline Batteries Subject to Quasi-Static and Dynamic Loading

Electrochemical changes were successfully monitored through the coupling of external loading, electrochemical impedance spectroscopy (EIS), and distribution of relaxation times (DRT) analysis. The development of the testing methods allows for detailed observation of changes due to mechanical loading...

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Bibliographic Details
Published inJournal of the Electrochemical Society Vol. 170; no. 1; pp. 10521 - 10534
Main Authors Flannagin, Megan, Barnes, Baxter, O’Donoghue, William, Mayeur, Jason, Hazeli, Kavan, Nelson, George J.
Format Journal Article
LanguageEnglish
Published United States IOP Publishing 01.01.2023
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Summary:Electrochemical changes were successfully monitored through the coupling of external loading, electrochemical impedance spectroscopy (EIS), and distribution of relaxation times (DRT) analysis. The development of the testing methods allows for detailed observation of changes due to mechanical loading and distinguishes responses between different cell geometries. Comparison of the force vs displacement, voltage vs displacement, and distribution of relaxation times plots to the different cell geometries display failure modes specific to geometry as well as the impact of different loading profiles. Numerical modeling confirmed the movement within individual cells and predicted locations with the most deformation based on the external loading condition applied. The results gathered from combining mechanical loading, electrochemical response, and numerical modeling, yield a viable approach to establishing an improved understanding of the effects of mechanical loading on the electrochemical response of multiple battery geometries and the methods herein may be extensible to additional battery chemistries.
Bibliography:JES-108758.R1
USDOE
AC05-00OR22725
ISSN:0013-4651
1945-7111
DOI:10.1149/1945-7111/acaad0