Unlocking Li superionic conductivity in face-centred cubic oxides via face-sharing configurations

Author:

Chen YuORCID,Lun ZhengyanORCID,Zhao Xinye,Koirala Krishna PrasadORCID,Li Linze,Sun YingzhiORCID,O’Keefe Christopher A.,Yang XiaochenORCID,Cai ZijianORCID,Wang ChongminORCID,Ji HuiwenORCID,Grey Clare P.ORCID,Ouyang BinORCID,Ceder GerbrandORCID

Abstract

AbstractOxides with a face-centred cubic (fcc) anion sublattice are generally not considered as solid-state electrolytes as the structural framework is thought to be unfavourable for lithium (Li) superionic conduction. Here we demonstrate Li superionic conductivity in fcc-type oxides in which face-sharing Li configurations have been created through cation over-stoichiometry in rocksalt-type lattices via excess Li. We find that the face-sharing Li configurations create a novel spinel with unconventional stoichiometry and raise the energy of Li, thereby promoting fast Li-ion conduction. The over-stoichiometric Li–In–Sn–O compound exhibits a total Li superionic conductivity of 3.38 × 10−4 S cm−1 at room temperature with a low migration barrier of 255 meV. Our work unlocks the potential of designing Li superionic conductors in a prototypical structural framework with vast chemical flexibility, providing fertile ground for discovering new solid-state electrolytes.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,General Chemistry

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