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August 15, 2025EnergiesOpen Access

Exploring Different Metal-Oxide Cathode Materials for Structural Lithium-Ion Batteries Using Dip-Coating

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Authors

DPDavid PetrushenkoJohnson Space CenterTBThomas D. BurnsUniversity of South CarolinaPZPaul ZiehlUniversity of South Carolina

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Implication

Research demonstrates electrochemical performance of various metal-oxide cathodes in structural lithium-ion batteries, implying advancements in composite energy storage.

Key Points

  • The electrochemical analysis revealed capacities ranged from 39.8 Ah kg−1 to 64.7 Ah kg−1 for lithium iron phosphate and lithium nickel cobalt aluminum oxide, respectively.
  • After 55 cycles, full cells exhibited capacities of 18.1, 23.5, 27.2, and 28.2 Ah kg−1 for lithium iron phosphate, lithium cobalt oxide, lithium nickel cobalt aluminum oxide, and lithium nickel manganese cobalt oxide.
  • Composite cathodes were made using active materials coated on carbon fibers with slurries containing polyvinylidene fluoride and carbon black for performance testing.
  • Visual analysis was conducted using scanning electron microscopy and energy-dispersive x-ray techniques to confirm successful coating and material transfer.

Cite This Study

Petrushenko et al. (2025) studied this question.

synapsesocial.com/papers/68af50a1ad7bf08b1ead8be9https://doi.org/10.3390/en18164354
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Also Consider

Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Dip-Coating of Carbon Fibers for the Development of Lithium Iron Phosphate Electrodes for Structural Lithium-Ion Batteries2022 · 22 citations
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