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◆ eScience2026-05-01· Electrolyte

Regulating PTFE fibrillation via LLZO solid electrolyte incorporation for mechanically robust dry-processed sulfide solid electrolyte membranes

Seungwoo Lee, Seungmin Han, Geunsu Kim, Jiwoon Kim, Yeseung Lee, Joonhyeok Park, Jaeik Kim, Gyun Joong Kim, Kil nyon Kim, Jaewon Oh, Ungyu Paik, Taeseup Song

原始摘要(英文原文)· Original abstract
The fabrication of thin and mechanically robust sulfide-based solid electrolyte (SE) membranes remains a key challenge for the practical commercialization of all-solid-state batteries (ASSBs). In particular, the intrinsic ductility of sulfide-based SEs limits effective shear-force transfer to the polytetrafluoroethylene (PTFE) binder during dry processing, thereby suppressing PTFE fibrillation and hindering the formation of a robust fibrous network. Herein, we report an argyrodite-type Li 6 PS 5 Cl (LPSCl)-based SE membrane incorporating Li 7 La 3 Zr 2 O 12 (LLZO) SE particles, to manipulate PTFE fibrillation behavior and simultaneously enhance mechanical robustness and electrochemical performance. The introduction of LLZO particles enhances interparticle interfacial interactions and their friction during dry processing, enabling efficient shear-force transfer to the PTFE binder and promoting the formation of a continuous fibrous network. The enhanced PTFE fibrillation behavior contributes to the formation of a robust and well-integrated interface with both the cathode and the anode. As a result, ASSBs employing the full cell exhibit improved long-term cycling stability, with 81.2% capacity retention after 300 cycles at 0.3C. This work demonstrates the critical role of oxide-based SE additives in regulating fibrillation and microstructural uniformity in sulfide-based SEs, providing an effective strategy for fabricating thin and mechanically robust SE membranes toward their practical implementation in next-generation energy storage systems.
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Regulating PTFE fibrillation via LLZO solid electrolyte incorporation for mechanically robust dry-processed sulfide solid electrolyte membranes — 科研速览 Science Skim