Electrolyte wetting of fracture surfaces in cathode materials enhances lithium (de)intercalation and drives additional bulk cracking, and in simulations these wetted cracks raise first-cycle capacity and Coulombic efficiency.
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Deciphering the interplay between wetting and chemo-mechanical fracture in lithium-ion battery cathode materials
Electrolyte wetting of fracture surfaces in cathode materials enhances lithium (de)intercalation and drives additional bulk cracking, and in simulations these wetted cracks raise first-cycle capacity and Coulombic efficiency.