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August 22, 2026Batteries & Supercaps

High‐Entropy Electrolytes: Advancing Low‐Temperature Lithium Batteries Toward Extreme Environments

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Authors

HZHaodong ZhouTata Institute of Fundamental ResearchJGJunze GuoTata Institute of Fundamental ResearchWZWeifeng ZouTata Institute of Fundamental Research

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Implication

Review demonstrates high-entropy design strategies enhance electrolyte performance in extreme low-temperature lithium batteries, highlighting multicomponent optimization for energy storage.

Key Points

  • To review the mechanisms, design principles, and performance advantages of high-entropy electrolytes for enabling lithium batteries to operate in extreme low-temperature environments.
  • Synthesized literature on high-entropy strategies across liquid, inorganic solid, and solid polymer electrolyte systems.
  • Analyzed structural mechanisms involving solvation configuration, low-temperature fluidity, ionic conductivity, and solid electrolyte interphase (SEI) stability.
  • Conventional electrolyte strategies struggle with reduced ionic conductivity, sluggish lithium-ion desolvation kinetics, and solid electrolyte interphase degradation under freezing conditions.
  • Multicomponent high-entropy design effectively regulates solvation structures and preserves ionic transport and interfacial stability in extreme cold.

Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/6a895eeeca7ade938187d15fhttps://doi.org/10.1002/batt.70435
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