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February 25, 2026Journal of the American Chemical Society0 citations

Framework Short-Range Order Observed in a Spinel-Type Li Superionic Conductor

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YCYu ChenCRCaleb RametteMKMatthew Krogstad

Key Points

  • The research aims to investigate the structural complexities and short-range order in a lithium superionic conductor.
  • Synthesis of single crystals of Li superionic conductor Li16.2(1)In9.00(2)Sn1.10(1)O23.8 (LISO)
  • Single-crystal neutron diffraction to assess Li disorder
  • Synchrotron diffuse scattering for structural analysis
  • 3D-ΔPDF analysis combined with Monte Carlo simulations.
  • Detection of significant Li disorder with site splitting
  • Revelation of short-range order in the nonalkali framework
  • Establishment of a connection between local energetics and ionic conductivity.

Abstract

Solid-state superionic conductors are characterized by rich structural disorders. Though structural complexities are central to their functionalities, they often give rise to short-range order that eludes detection by conventional diffraction-based techniques and is thus overlooked in establishing precise structure-property relationships. In this work, we synthesized single crystals of a recently discovered lithium (Li) superionic conductor Li16.2(1)In9.00(2)Sn1.10(1)O23.8 (LISO) for in-depth characterizations of structural subtleties. LISO exhibits an unusual spinel-like phase with significant Li overstoichiometry and a face-sharing Li network. Single-crystal neutron diffraction confirms significant Li disorder, as manifested in Li site splitting and partial occupancy. More importantly, synchrotron diffuse scattering combined with 3D-ΔPDF analysis and Monte Carlo simulations reveal short-range order in the nonalkali framework that might contribute to the phase stability and ionic conductivity. This work showcases an example in which subtle local energetics can be directly visualized in structurally disordered ionic conductors.

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Cite This Study

Chen et al. (2026) studied this question.

synapsesocial.com/papers/699e9166f5123be5ed04ed92https://doi.org/10.1021/jacs.5c12231
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