Degradation mechanisms of composite cathodes in argyrodite-based all-solid-state batteries

  • Chung, Chanyou
  • Seok, Jangwhan
  • Ahn, Subin
  • Heo, Subin
  • Yoon, Won-Sub
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초록

All-solid-state batteries (ASSBs), which replace flammable liquid electrolytes with inorganic solid electrolytes (SEs), have attracted considerable attention as safer and higher-energy storage technologies. Among various candidates, sulfide-based SEs such as argyrodite-type Li6PS5Cl combine high ionic conductivity with excellent processability, facilitating the fabrication of dense and well-integrated composite cathodes. Nevertheless, the electrochemical performance of ASSBs remains largely constrained by interfacial and structural degradation occurring within the composite cathode. Understanding the degradation phenomena at the interface between the SE and the cathode active material is thus essential to improving the electrochemical performance and cycle life of these systems. Specifically, these degradation pathways can be broadly divided into (electro)chemical mechanisms-such as electrochemical decomposition of SE, transition-metal dissolution, oxygen-involving interfacial reactions, and surface reconstruction-and mechanical mechanisms, including particle cracking and interfacial contact loss driven by anisotropic stress and volume fluctuations. Acting synergistically, these processes reduce Li+ mobility, increase interfacial impedance, and cause irreversible capacity loss. In this review, we systematically examine these degradation modes in sulfide-based ASSBs, with a particular focus on Ni-rich layered oxide/argyrodite composite cathodes. By organizing recent experimental findings, we aim to provide a comprehensive understanding of the limitations of current ASSB systems and to guide future efforts toward more stable and durable solid-state battery technologies. (c) 2026 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by Elsevier B.V. and Science Press. All rights are reserved, including those for text and data mining, AI training, and similar technologies.

키워드

All-solid-state batteriesDegradation mechanismsComposite cathodesSulfide solid electrolytesNi-rich layered oxidesLAYERED OXIDE CATHODESCATHODE/SULFIDE ELECTROLYTE INTERFACETRANSITION-METAL DISSOLUTIONSURFACE-DENSIFIED PHASESLI-ION BATTERYNI-RICHELECTROCHEMICAL REDOXINTERPHASE FORMATIONTHERMAL-STABILITYCAPACITY FADE
제목
Degradation mechanisms of composite cathodes in argyrodite-based all-solid-state batteries
저자
Chung, ChanyouSeok, JangwhanAhn, SubinHeo, SubinYoon, Won-Sub
DOI
10.1016/j.jechem.2025.12.043
발행일
2026-05
유형
Review
저널명
Journal of Energy Chemistry
116
페이지
470 ~ 481