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June 4, 2026Journal of Power Sources1 citationsOpen Access

Challenges in the reliable detection of lithium plating using dynamic electrochemical impedance spectroscopy

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RURaphael UrbanMSMathieu Seyfritz-CombyCPChristian Peter

Key Points

  • The study aims to explore challenges in effectively detecting lithium plating in lithium-ion batteries using electrochemical impedance spectroscopy.
  • Examined three types of 18650 lithium-ion cells with varying designs.
  • Developed experimental setup using single-sine and multi-sine excitation to analyze dynamic impedance.
  • Conducted post-mortem analysis after fast charging to assess lithium plating detection accuracy.
  • Impedance evolution assessed with voltage relaxation behavior reveals challenges in unambiguously identifying lithium plating.
  • Higher-order derivatives of the impedance showed potential but were sensitive to signal quality and processing parameters.
  • Robust signal post-processing is essential to improve the reliability and accuracy of plating detection.

Abstract

Fast charging of lithium-ion batteries is strongly limited by the risk of lithium plating, which accelerates aging and compromises safety. While electrochemical impedance spectroscopy has been widely explored for plating detection, significant challenges regarding its practical reliability and signal interpretation remain insufficiently addressed. Three commercially available 18650 lithium-ion cell types representing both high-energy and high-power designs are examined. Therefore, an experimental setup with single-sine and multi-sine excitation was developed to analyze the dynamic impedance under different excitation signals, C-rates, and temperatures. The evolution of impedance is evaluated in conjunction with voltage relaxation behavior to identify characteristic features associated with lithium plating. Additionally, post-mortem analysis of cells subjected to extended fast-charging indicates that unambiguous identification of lithium plating under extreme conditions remains challenging. Higher-order derivatives of the impedance are assessed as potential mathematical metrics for plating detection. However, a sensitivity analysis reveals that the accuracy of the metrics depends on signal quality and post-processing parameters, leading to shifts in the suspected plating onset or the introduction of artifacts. Consequently, robust signal post-processing is essential to ensure the reliability and accuracy of impedance-based plating detection.

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Cite This Study

Urban et al. (2026) studied this question.

synapsesocial.com/papers/6a2115d7d499ed480b16edb1https://doi.org/10.1016/j.jpowsour.2026.240468
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