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◆ Science advances2026-08-14

Solid interface electrochemistry between LiCoO2 and solid-state electrolytes.

Kangzhe Yu, Lei Su, Weijun Tuo, Jiuqing Gui, Jinying Xiong, Jie Liu, Zhihan Liu, Bingbing Tian, Shangquan Zhao, Xianyong Zhang, Xia Lu

原始摘要(英文原文)· Original abstract
Strategies to optimize the cathode/solid electrolyte interphase (CSEI) have been developed to improve the high voltage durability of LiCoO2 (LCO), yet the underlying interfacial mechanism remains unclear. Here, we construct a stable oxyhalide-derived CSEI for all-solid-state batteries (ASSBs) to identify the key interfacial features required for high-voltage operation. At 4.6 volts, commercial LCO coupled with Li6PS5Cl (LPSC) suffers from severe interfacial instability, sluggish Li+ transport, and continuous side reactions. By introducing LiNbOCl4 (LNOC), an in situ formed CSEI rich in Li-Cl/Nb-O/Nb-O-Cl species is established, lowering the interfacial energy barrier to 0.363 electron volts and enhancing interfacial toughness and ionic conductivity. This stabilized interface suppresses lattice oxygen activity, accelerates Li+ transport, and improves the reversibility of O3/H1-3 phase transitions. Consequently, LCO|LNOC|LPSC|Li-In ASSBs deliver 95.8% capacity retention after 500 cycles at ∼1.0 C-rate with an LCO loading of 15.31 milligrams per square centimeter. The pouch cell achieves 90% initial Coulombic efficiency and stable cycling over 50 cycles.
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Solid interface electrochemistry between LiCoO2 and solid-state electrolytes. — 科研速览 Science Skim