Unveiling the Graphite Electrolyte Interphase Evolution under Fast Charging Conditions in Commercial Cells.
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ABSTRACT: The resurgence of LiFePO4 lithium-ion batteries as a competitive alternative to nickel-cobalt systems for electric vehicle (EV) applications, driven by their superior thermal stability and cycle life, necessitates a thorough understanding of their degradation modes to develop strategies for performance and safety enhancements. This study investigates cycling-induced degradation in 18650 LiFePO4/graphite full cells at varying charge rates. We analyze capacity degradation mechanisms through electrochemical performance, surface and bulk morphology, composition, and structure of both the cathode and anode. Our results reveal that irreversible lithium loss, primarily due to solid-electrolyte interphase formation, dominates at lower charging rates. However, above 4C, graphi
SUBMITTER: Liu A
PROVIDER: S-EPMC12723637 | biostudies-literature | 2025 Dec
REPOSITORIES: biostudies-literature
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