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March 29, 2026Chemistry of Materials2 citationsOpen Access

Complex Dynamics in Argyrodite Solid-State Ion Conductors

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ASAustin M. ShotwellSGShelby L. GalinatAMAnnalise E. Maughan

Key Points

  • This work explores the dynamic processes affecting ion transport in argyrodite solid-state ion conductors.
  • Synthesis of recent advances in the study of argyrodite materials
  • Examination of compositional and structural motifs
  • Analysis of ion hopping facilitated by lattice dynamics
  • Highlighted the role of long-range phonons in ion transport
  • Identified local rotational dynamics of polyanionic species as key contributors
  • Established guiding principles governing transport phenomena

Abstract

Argyrodites are a compositionally diverse family of materials that exhibit remarkable ion transport properties. While the average crystal structures of argyrodites have been extensively studied, ion transport in these materials is governed by a confluence of dynamic processes spanning the cation, anion, and polyanionic sublattices. This Perspective synthesizes recent advances in understanding the role of dynamics in structural behavior and ion transport properties. We examine the compositional and structural motifs that govern order–disorder transitions within the argyrodite family and further explore how ion hopping is facilitated by lattice dynamics, from long-range phonons to local rotational dynamics of polyanionic species. Through the lens of dynamics spanning multiple time and length scales, we establish guiding principles that govern transport phenomena and highlight avenues of future study for the argyrodite family of ion conductors.

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Cite This Study

Shotwell et al. (2026) studied this question.

synapsesocial.com/papers/69c8c277de0f0f753b39cbd9https://doi.org/10.1021/acs.chemmater.5c02939
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