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January 22, 2026Materials Advances1 citationsOpen Access

Numerical Modeling of Electrochemical Transport and Discharge Mechanisms in Hierarchically Porous Lithium-Ion Electrodes

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DSDebanjan SarkerRBRajendra K. BordiaUSUlf D. Schiller

Key Points

  • The research aims to model the electrochemical transport and discharge mechanisms in lithium-ion electrodes with hierarchical porous structures.
  • Developed numerical models to simulate ion transport and electrochemical reactions.
  • Analyzed the impact of hierarchical porosity on charge/discharge performance.
  • Evaluated electrolyte channel effectiveness within porous structures.
  • Hierarchical porosity significantly improves discharge capacity during high charge rates.
  • Electrolyte channels enhance ion movement, optimizing battery performance.
  • Models predict enhanced energy retention compared to traditional electrodes.

Abstract

Hierarchical porous microstructures are promising candidates for lithium battery electrodes that maintain capacity and specific energy at high charging and discharging rates. The electrolyte channels embedded in these structures facilitate...

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Cite This Study

Sarker et al. (2026) studied this question.

synapsesocial.com/papers/6971bdec642b1836717e2969https://doi.org/10.1039/d5ma00902b
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