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Surface Lattice Modulation Enables Stable Cycling of High-Loading All-solid-state Batteries at High Voltages. | LitMetric

Surface Lattice Modulation Enables Stable Cycling of High-Loading All-solid-state Batteries at High Voltages.

Angew Chem Int Ed Engl

CAS Key Laboratory of Molecular Nanostructure and Nanotechnol-ogy, and Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences (CAS), No.2 Zhongguancun North First Street, 100190, Beijing, P. R. China.

Published: April 2024

Halide solid electrolytes, known for their high ionic conductivity at room temperature and good oxidative stability, face notable challenges in all-solid-state Li-ion batteries (ASSBs), especially with unstable cathode/solid electrolyte (SE) interface and increasing interfacial resistance during cycling. In this work, we have developed an Al-doped, cation-disordered epitaxial nanolayer on the LiCoO surface by reacting it with an artificially constructed AlPO nanoshell; this lithium-deficient layer featuring a rock-salt-like phase effectively suppresses oxidative decomposition of LiInCl electrolyte and stabilizes the cathode/SE interface at 4.5 V. The ASSBs with the halide electrolyte LiInCl and a high-loading LiCoO cathode demonstrated high discharge capacity and long cycling life from 3 to 4.5 V. Our findings emphasize the importance of specialized cathode surface modification in preventing SE degradation and achieving stable cycling of halide-based ASSBs at high voltages.

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Source
http://dx.doi.org/10.1002/anie.202400562DOI Listing

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