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◆ Small (Weinheim an der Bergstrasse, Germany)2026-09-17

LiCoO2/LiMn0.6Fe0.4PO4 Composite Cathode with Enhanced Interfacial Structure Enables Long-Life Lithium-Ion Batteries.

Jinyang Li, He Huang, Hao Guo, Qiujiang Dong, Xingkai Wang, Yajun Hou, Peiyao Zhang, Wenbin Hu, Xiaopeng Han

原始摘要(英文原文)· Original abstract
Extending the cycle life of LiCoO2 (LCO) cathodes under elevated cutoff voltages remains a critical challenge for lithium-ion batteries, as accelerated degradation is often governed by reaction heterogeneity and interfacial instability. Herein, we report a composite cathode composed of micron-sized LCO and nanoscale LiMn0.6Fe0.4PO4, in which LMFP functions as a kinetically robust and electrochemically active component. Without invoking specific heterostructures, the optimized composite exhibits outstanding cycling stability at 4.45 V, retaining 94.2% of its initial capacity after 300 cycles at 1 C/1 C and 91.4% after 300 cycles at 3 C/3 C. Even at 4.6 V, the composite consistently outperforms pristine LCO. Importantly, pouch cells paired with a prelithiated silicon-carbon anode deliver an energy density of 250 Wh kg-1 and maintain 81.8% capacity retention over 400 cycles. These results highlight a practical composite cathode strategy for prolonging the service life of LCO-based batteries within realistic voltage windows, offering a scalable pathway toward durable high-energy lithium-ion systems.
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LiCoO2/LiMn0.6Fe0.4PO4 Composite Cathode with Enhanced Interfacial Structure Enables Long-Life Lithium-Ion Batteries. — 科研速览 Science Skim