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Rotational stacking faults in the ionic conductor Li3ScCl6

Abstract:
Halide-based solid electrolytes have gained recent interest due to their promising ionic conductivity and wide electrochemical stability window, but the influence of synthesis conditions on structure is not fully characterized. Here, we report a combined experimental and computational study of the effect of thermal treatment temperature on the structure and Li+ conduction dynamics of the superionic halide Li3ScCl6. Synchrotron diffraction analysis shows that samples treated between 450 °C and 750 °C form the monoclinic Li3ScCl6 structure and contain rotational stacking faults, whose density increases with thermal treatment temperature and mechanical processing time. Impedance spectroscopy, nuclear magnetic resonance spectroscopy, and molecular dynamics simulations using machine-learned interatomic potentials, however, indicate that these faults have a negligible effect on long-range Li+ conductivity, though local Li+ dynamics are modified. This work demonstrates that Li3ScCl6 maintains robust transport properties despite rotational stacking faults, and highlights the importance of in-depth structural analyses for understanding the relationships between synthesis protocols, structure, and ionic transport in halide solid electrolytes.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.1021/acs.chemmater.5c02303

Authors


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Funder identifier:
https://ror.org/05dt4bt98
Grant:
EP/S003053/1
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Funder identifier:
https://ror.org/018mejw64
Grant:
459785385
More from this funder
Funder identifier:
10.13039/501100002347
Grant:
03XP0430F
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Funder identifier:
https://ror.org/002h8g185
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Funder identifier:
https://ror.org/05mg91w61


Publisher:
American Chemical Society
Journal:
Chemistry of Materials More from this journal
Volume:
37
Issue:
24
Pages:
9858-9868
Publication date:
2025-12-02
Acceptance date:
2025-11-25
DOI:
EISSN:
1520-5002
ISSN:
0897-4756


Language:
English
Pubs id:
2349040
Local pid:
pubs:2349040
Source identifiers:
W4416926299
Deposit date:
2026-02-25
ARK identifier:

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