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Na-K Interlayer Driven Na-NASICON Solid-State Batteries

delete2025-02-10
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PRE
AI
Y
Yang Li
Z
Zhichao Wang
C
Chen Sun
Y
Yankun Dou
袁轩一 cover
袁轩一 (Xuanyi Yuan)
金海波 cover
金海波 (Haibo Jin)
Y
Yongjie Zhao
DOI:10.1002/adfm.202425995delete
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Abstract

Abstract

En 中文
Solid-state sodium batteries are deemed as a highly promising candidate for medium and long-term stationary energy storage. But, the solid-state electrolyte with desirable ionic conductivity and high stability against solid metal electrodes remains a significant challenge for the research and development of solid-state sodium metal batteries. In this research, the approach of in-situ formed Na-K interlayer is put forward, wherein K+ electrochemically migrates from the K-substituted NASICON-structure ceramic electrolyte toward the interface of ceramic electrolyte and Na metal electrode, locally and dynamically forming a Na-K interlayer with Na metal. Therefore, the compatibility between ceramic electrolytes and the Na electrode is obviously enhanced. Accordingly, the area specific resistance of the solid/solid interface contact gets reduced to 29.9 Omega cm2 and a high room temperature critical current density of 1.3 mA cm-2 is achieved. In the meantime, the Na/Na3Zr2Si2PO12-0.005K/Na can steadily operate for 1400 h at 0.2 mA cm-2. Moreover, NASICON-structure ceramic electrolyte-based solid-state sodium metal batteries paired with polyanion and layered sodium ion cathodes are constructed to highlight the superiority of this well-designed ceramic electrolyte/metal electrode interface.
Keywords:
in-situ
Na-K interlayer
NASICON-structure ceramic electrolyte
sodium metal batteries

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

C
China Inst Atom Energy
Scholars:
232
Papers: 91
Citations: 16
B
Beijing Inst Technol
Scholars:
4.3K
Papers: 1.8K
Citations: 688
R
Renmin Univ China
Scholars:
637
Papers: 392
Citations: 126
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