Unraveling Li-ion transport mechanisms in high-entropy anion-disordered argyrodites via machine-learned interatomic potentials

  • Kwon, Ohmin
  • Jang, Myeongcho
  • Park, Kanguk
  • Jung, Hun-Gi
  • Chung, Kyung Yoon
  • 외 2명
Citations

WEB OF SCIENCE

10
Citations

SCOPUS

9

초록

Lithium argyrodite sulfide solid electrolytes are widely used in all-solid-state batteries owing to their high ionic conductivity. Recently, high-entropy argyrodites formed by anion disorder in Li6PS5Cl have emerged as promising superionic conductors. However, the details of the Li-ion conduction mechanism in high-entropy argyrodites have yet to be fully elucidated. In this study, the Li-ion conduction mechanism is systematically investigated through first-principles calculations and molecular dynamics simulations using machine-learned interatomic potentials (MLIPs). The calculations indicate that high-entropy Li6PS5Cl argyrodites improve site energy uniformity and facilitate inter-cage jumps, significantly enhancing Li-ion conductivity. Ionic conductivity was further improved with increased disorder in Cl-rich argyrodites, but a critical threshold was observed with the addition of Cl. By leveraging MLIPs, a detailed analysis of the conduction mechanism was efficiently conducted, and a systematic investigation of ionic conductivity through entropy variation was performed. These findings highlight the reliability and effectiveness of MLIPs in facilitating the design and analysis of novel high-entropy superionic argyrodites.

제목
Unraveling Li-ion transport mechanisms in high-entropy anion-disordered argyrodites via machine-learned interatomic potentials
저자
Kwon, OhminJang, MyeongchoPark, KangukJung, Hun-GiChung, Kyung YoonShim, Joon HyungYu, Seungho
DOI
10.1039/d5ta02205c
발행일
2025-04
유형
정기학술지(Article(Perspective Article포함))
저널명
Journal of Materials Chemistry A
13
22
페이지
16547 ~ 16555