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Cited 65 time in webofscience Cited 70 time in scopus
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Li+ conduction in aliovalent-substituted monoclinic Li2ZrCl6 for all-solid-state batteries: Li2+xZr1-xMxCl6 (M = In, Sc)open access

Authors
Kwak, HiramHan, DaseulSon, Jun PyoKim, Jong SeokPark, JuhyounNam, Kyung-WanKim, HyungsubJung, Yoon Seok
Issue Date
Jun-2022
Publisher
Elsevier BV
Keywords
All-solid-state batteries; Solid electrolytes; Halides; Ionic conductivities; Li-ion batteries
Citation
Chemical Engineering Journal, v.437, pp 1 - 7
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
Chemical Engineering Journal
Volume
437
Start Page
1
End Page
7
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/2969
DOI
10.1016/j.cej.2022.135413
ISSN
1385-8947
1873-3212
Abstract
Newly emerging halide superionic conductors with excellent (electro)chemical oxidation stability and deform ability are considered as the enabler for high-performance all-solid-state batteries. Compared to close-packed monoclinic Li3InCl6 or Li3ScCl6, despite the same structural framework, the lower ionic conductivity of Li2ZrCl6 is intriguing. Herein, the structural evolution and Li+ migration of aliovalent-substituted Li2ZrCl6 with In3+ (or Sc3+) are investigated. A monoclinic crystal structure over the entire range of substitution (0 < x < 1.0 in Li2+xZr1-xInxCl6) is identified by the Rietveld refinement of neutron diffraction. By the aliovalent substitution, the Li+ conductivity of Li2ZrCl6 is increased drastically from 7.1 x 10(-6) to max. 2.1 x 10(-3) S cm- 1 at 30 ?. It is revealed that the aliovalent substitution results in anisotropic lattice volume expansion and redistribution of Li in the lattice. Specifically, the increased concentration of Li+ in the (002) plane renders the Li+ migration more favorable. The bond valence energy level calculations also disclose two dimensionally (2D) preferable 3D Li+ migration channels, which emphasizes a tetrahedral Li site in the (002) plane as the key for facile Li+ migration. Furthermore, the excellent electrochemical performance of all-solid-state batteries using In-substituted Li2ZrCl6 is demonstrated for single-crystalline LiN(i0.88)Co0.11Mn(0.01)O(2) cathode.
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