Tailoring I-rich argyrodite sulfides via low-energy mechanical alloying for all-solid-state Li-metal batteries

  • Kim, Young Jung
  • Nahm, Sahn
  • Kim, Jae Jin
  • Lee, Jong-Ho
  • Kim, Hyoungchul
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초록

I-rich argyrodite sulfides have significant potential to enhance the interfacial stability of Li metal and suppress dendrite growth by forming a LiI-based interphase. However, conventional high-energy mechanical alloying often leads to poor Li-ion conductivity owing to the intrinsically low crystallization temperature of I-rich compositions, limiting their application as solid electrolytes. In this study, we synthesized I-rich argyrodites via low-energy mechanical alloying and successfully optimized the composition of Li5.6PS4.6Cl0.8I0.6. This electrolyte exhibited high Li-ion conductivity of 2.44 mS cm−1, a moderate elastic modulus of 12.37 GPa, and a critical current density of 1.6 mA cm−2. Furthermore, all-solid-state batteries employing this electrolyte demonstrated stable operation, achieving 99% capacity retention after 250 cycles at 1C. These results highlight that the low-energy alloying strategy effectively overcomes the limitations of conventional high-energy processes, thereby enabling the mechanical advantages of Cl–I substitution. We also demonstrate that enhancing the electrochemical and mechanical properties of I-rich argyrodites directly improves interfacial stability and cell durability. This journal is © The Royal Society of Chemistry, 2026

제목
Tailoring I-rich argyrodite sulfides via low-energy mechanical alloying for all-solid-state Li-metal batteries
저자
Kim, Young JungNahm, SahnKim, Jae JinLee, Jong-HoKim, Hyoungchul
DOI
10.1039/d5ta10262f
발행일
2026-03-17
유형
Article
저널명
Journal of Materials Chemistry A
14
17
페이지
9939 ~ 9947