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An electrochemically stable homogeneous glassy electrolyte formed at room temperature for all-solid-state sodium batteries

  • Xiaowei Chi
  • , Ye Zhang
  • , Fang Hao
  • , Steven Kmiec
  • , Hui Dong
  • , Rong Xu
  • , Kejie Zhao
  • , Qing Ai
  • , Tanguy Terlier
  • , Liang Wang
  • , Lihong Zhao
  • , Liqun Guo
  • , Jun Lou
  • , Huolin L. Xin
  • , Steve W. Martin
  • , Yan Yao
  • University of Houston
  • CAS - Shanghai Institute of Ceramics
  • Iowa State University
  • Purdue University
  • Rice University
  • Northern Illinois University
  • Beijing Institute of Technology
  • University of California at Irvine

科研成果: 期刊稿件文章同行评审

181 引用 (Scopus)

摘要

All-solid-state sodium batteries (ASSSBs) are promising candidates for grid-scale energy storage. However, there are no commercialized ASSSBs yet, in part due to the lack of a low-cost, simple-to-fabricate solid electrolyte (SE) with electrochemical stability towards Na metal. In this work, we report a family of oxysulfide glass SEs (Na3PS4−xOx, where 0 < x ≤ 0.60) that not only exhibit the highest critical current density among all Na-ion conducting sulfide-based SEs, but also enable high-performance ambient-temperature sodium-sulfur batteries. By forming bridging oxygen units, the Na3PS4−xOx SEs undergo pressure-induced sintering at room temperature, resulting in a fully homogeneous glass structure with robust mechanical properties. Furthermore, the self-passivating solid electrolyte interphase at the Na|SE interface is critical for interface stabilization and reversible Na plating and stripping. The new structural and compositional design strategies presented here provide a new paradigm in the development of safe, low-cost, energy-dense, and long-lifetime ASSSBs.

源语言英语
文章编号2854
期刊Nature Communications
13
1
DOI
出版状态已出版 - 12月 2022
已对外发布

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