Superionic composite electrolytes with continuously perpendicular-aligned pathways for pressure-less all-solid-state lithium batteries

  • Lan, Xuexia
  • Li, Zhen
  • Zhao, Chao
  • Li, Ziyong
  • Zeng, Yi
  • 외 11명
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초록

Solid electrolytes are promising candidates for safe, high-energy battery systems. Composite solid electrolytes, in particular, hold the potential to combine high ionic conductivity with stable electrode interfaces. However, a fundamental trade-off often exists between ion conduction and mechanical properties. Here we present a composite solid electrolyte design that decouples ion conduction from mechanical flexibility, achieving a high ionic conductivity of 10.2 mS cm(-1) at 25 degrees C while maintaining close mechanical contact with the electrode. The composite architecture consists of alternating layers of perpendicularly aligned (PA) Li0.3Cd0.85PS3 nanosheets, to establish continuous superionic conduction pathways, and Li-containing polyethylene oxide (PEO) layers, to ensure flexibility and interfacial compatibility. At 25 degrees C, this PA-Li0.3Cd0.85PS3/PEO electrolyte enables Li||LiNi0.8Co0.1Mn0.1O2 coin cells (stack pressure during assembly <0.5 MPa) to retain 92% discharge capacity after 600 cycles at 0.2 mA cm(-2), with an average cycling Coulombic efficiency of 99.9%, and also facilitates practical use of pressure-less (stack pressure <0.1 MPa) Li||LiFePO4 pouch cells. This composite design strategy is further validated by substituting Cd with Mn in the inorganic sulfide nanosheets to produce a PA-Li0.46Mn0.77PS3/PEO electrolyte, exhibiting an ionic conductivity of 6.1 mS cm(-1) at 25 degrees C and good mechanical flexibility.

키워드

CONDUCTIVITYENHANCEMENT
제목
Superionic composite electrolytes with continuously perpendicular-aligned pathways for pressure-less all-solid-state lithium batteries
저자
Lan, XuexiaLi, ZhenZhao, ChaoLi, ZiyongZeng, YiLiu, YuxuanLiu, QiutanLi, XiangjieZhang, LiliChen, ZhengjieFeng, XiaoxiaoWang, JiahongDing, FengHu, RenzongPeng, JingCheng, Hui-Ming
DOI
10.1038/s41565-025-02106-9
발행일
2026-01
유형
Article; Early Access
저널명
Nature Nanotechnology
21
3