Design principles for cation-disordered superionic thioantimonate argyrodite solid electrolytes

  • Park, Kanguk; 
  • Jang, Myeongcho; 
  • Kwon, Eunji; 
  • Lee, Yongheum; 
  • Jung, Hun-Gi; 
  • ... Yu, Seung-Ho; 
  • 외 2명
Citations

WEB OF SCIENCE

1
Citations

SCOPUS

1

초록

Lithium thioantimonate argyrodite solid electrolytes, Li6 +xMxSb1-xS5I (M=Si, Ge), are promising candidates for all-solid-state batteries due to their exceptional ionic conductivity. However, limited mechanistic understanding hinders the rational design of these materials. In this study, we systematically investigate the underlying Li-ion conduction mechanisms and propose a cation-disorder-driven design strategy using machine-learned interatomic potentials (MLIPs). While inter-cage migration via the Wyckoff 16e (T4) site remains significant, enhanced inter-cage migration through Wyckoff 48 h (T2) sites induced by Si and Ge dopants emerges as a critical factor for achieving high ionic conductivity. Additionally, Si and Ge exhibit distinct inductive effects: Si requires higher substitution to activate T2 pathways, while Ge achieves optimal conductivity at lower levels. Co-substitution of Si and Ge further increases cation disorder, yielding ionic conductivity up to similar to 50 mS/cm. This study demonstrates the effectiveness of MLIPs in elucidating conduction mechanisms and facilitating the rational design of advanced argyrodite electrolytes.

키워드

Thioantimonate argyrodite; Ionic conductivity; Conduction mechanism; Cation disorder; Machine-learning Interatomic potentials; STRUCTURAL DISORDER; IONIC-CONDUCTIVITY; LI6PS5X X; LITHIUM; DIFFUSION; BETA-LI3PS4; MECHANISM; BR; CL
제목
Design principles for cation-disordered superionic thioantimonate argyrodite solid electrolytes
저자
Park, Kanguk; Jang, Myeongcho; Kwon, Eunji; Lee, Yongheum; Jung, Hun-Gi; Chung, Kyung Yoon; Yu, Seung-Ho; Yu, Seungho
DOI
10.1016/j.nanoen.2026.111777
발행일
2026-04
유형
Article
저널명
Nano Energy
권
150