DOE OSTI · 2940123
Fast lithium ion diffusion in brownmillerite Li x Sr 2 Co 2 O 5
Abstract
Transition metal oxides not only exhibits novel magnetic properties but also provides outstanding ionic transports. Ionic conductors have great potential for interesting tunable physical properties via ionic liquid gating and novel energy storage applications such as all-solid-state lithium batteries. In particular, low migration barriers and high hopping attempt frequency are the keys to achieve fast ion diffusion in solids. Taking advantage of the oxygen-vacancy channel in Li x Sr 2 Co 2 O 5 , we show that migration barriers of lithium ion are as small as 0.28–0.17 eV depending on the lithium concentration rates. Our first-principles calculation also investigated hopping attempt frequency and concluded the room temperature ionic diffusivity and ion conductivity are high as 10 −7 –10 −6 cm 2 s −1 and 10 −3 –10 −2 Scm −1 , respectively, which outperform most of perovskite-type, garnet-type, and sulfide Li-ion solid-state electrolytes. This work proves Li x Sr 2 Co 2 O 5 as a promising super-ionic conductor.
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Chen, Xin [Soochow University, Suzhou (China)], Zhang, Xixiang [King Abdullah University of Science and Technology (KAUST), Thuwal (Saudi Arabia)] (ORCID:0000000234786414), Yu, Jie-Xiang [Soochow University, Suzhou (China); Univ. of New Hampshire, Durham, NH (United States)] (ORCID:0000000237393253), Zang, Jiadong [Univ. of New Hampshire, Durham, NH (United States)] (ORCID:0000000250899806). 2025-05-22. Fast lithium ion diffusion in brownmillerite Li x Sr 2 Co 2 O 5. https://doi.org/10.1063/5.0253344
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