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Solvent-Free Melt-Processed Cathode Mitigates Li Anode Instability in Polymer-Based Solid-State Batteries

  • Oak Ridge National Laboratory
  • SLAC National Accelerator Laboratory
  • University of Tennessee, Knoxville
  • Stanford University
  • National Renewable Energy Laboratory

Research output: Contribution to journalArticlepeer-review

2 Scopus Citations

Abstract

Solvent-free manufacturing of battery components is a promising alternative to traditional slurry processing for reducing the cost and environmental impact. In this work, we used twin-screw melt extrusion to fabricate a polymer-based high voltage composite cathode. The melt-processed cathode is dense (near zero porosity) and thick (65 ..mu..m) and has high active material loading (80 wt %). The active particles are distributed uniformly throughout the melt-processed cathode, unlike the traditional slurry-cast cathode, which exhibits inhomogeneous particle distribution. In the melt-processed cathode, polymer and carbon form separate phases, whereas in the slurry-cast cathode they blend into a single phase. Due to these structural differences, the melt-processed cathode shows smooth charge-discharge profiles, while the slurry-cast cathode shows noisy charging and soft-shorting behavior. This work highlights that twin-screw extrusion as a scalable, solvent-free manufacturing method is advantageous in producing uniform cathodes, which mitigates anode instability.
Original languageAmerican English
Pages (from-to)3188-3195
Number of pages8
JournalACS Energy Letters
Volume10
Issue number7
DOIs
StatePublished - 2025

NLR Publication Number

  • NREL/JA-5700-94938

Keywords

  • batteries
  • lithium
  • melt-processing
  • polymer
  • solid-state
  • twin-screw extrusion

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