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Through first-principles calculations and crystal structure prediction techniques, we identify a new layered oxysulfide LiAlSO in orthorhombic structure as a novel lithium superionic conductor. Two kinds of stacking sequences of layers of AlS₂O₂ are found in different temperature ranges. Phonon and molecular dynamics simulations verify their dynamic stabilities, and wide band gaps up to 5. 6 eV are found by electronic structure calculations. The lithium migration energy barrier simulations reveal the collective interstitial-host ion "kick-off" hopping mode with barriers lower than 50 meV as the dominating conduction mechanism for LiAlSO, indicating it to be a promising solid-state electrolyte in lithium secondary batteries with fast ionic conductivity and a wide electrochemical window. This is a first attempt in which the lithium superionic conductors are designed by the crystal structure prediction method and may help explore other mixed-anion battery materials.
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Xuelong Wang
East China Normal University
Ruijuan Xiao
Institute of Physics
Hong Li
South China Agricultural University
Physical Review Letters
Chinese Academy of Sciences
University of Chinese Academy of Sciences
Institute of Physics
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Wang et al. (Fri,) studied this question.
synapsesocial.com/papers/69d8c8e8183921ebcaae3aaf — DOI: https://doi.org/10.1103/physrevlett.118.195901