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November 13, 2025Angewandte Chemie International Edition

Microemulsion Engineering Reconciles Propylene Carbonate Electrolytes and Graphite Anodes for All‐Climate Lithium‐Ion Batteries

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Authors

ZLZezhuo LiXHXueting HuHJHaijin Ji

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Implication

Microemulsion engineering demonstrates high efficiency in propylene carbonate electrolytes, reducing exfoliation and improving performance across extreme temperatures.

Key Points

  • Achieved a high initial Coulombic efficiency of 92.8% with a unique microemulsion design.
  • This approach suppressed detrimental PC co-intercalation at graphite anodes, enhancing longevity for lithium-ion batteries.
  • The engineering method improved compatibility of electrolytes with electrodes, particularly under extreme temperature conditions.
  • Microemulsion structures pave the way for further advancements in electrolyte/electrode designs in energy storage systems.

Cite This Study

Li et al. (2025) studied this question.

synapsesocial.com/papers/692523c1c0ce034ddc354cf6https://doi.org/10.1002/anie.202516984
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Microemulsion Engineering Reconciles Propylene Carbonate Electrolytes and Graphite Anodes for All‐Climate Lithium‐Ion Batteries2025
  2. 2Inhibiting Solvent Co-intercalation into Graphite Anode by Constructing an Anion-Rich Artificial Solid Electrolyte Interphase2026
  3. 3Mechanically Interlocked Networks Enable High‐Performance Propylene Carbonate‐Based Gel Electrolytes for Durable Lithium‐Ion Batteries2026
  4. 4Mechanically Interlocked Networks Enable High‐Performance Propylene Carbonate‐Based Gel Electrolytes for Durable Lithium‐Ion Batteries2026
  5. 5Microsolvating Competition in Li<sup>+</sup> Solvation Structure Affording PC‐Based Electrolyte with Fast Kinetics for Lithium‐Ion Batteries2024 · 61 citations