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Dendrite-Free Li-Metal Battery Enabled by a Thin Asymmetric Solid Electrolyte with Engineered Layers

  • Hui Duan
  • , Ya Xia Yin
  • , Yang Shi
  • , Peng Fei Wang
  • , Xu Dong Zhang
  • , Chun Peng Yang
  • , Ji Lei Shi
  • , Rui Wen
  • , Yu Guo Guo
  • , Li Jun Wan
  • CAS - Institute of Chemistry
  • Chinese Academy of Sciences

Research output: Contribution to journalArticlepeer-review

474 Scopus citations

Abstract

The key bottleneck troubling the application of solid electrolyte is the contradictory requirements from Li-metal and cathode, which need high modulus to block Li-dendrite penetration and flexibility to enable low interface resistance, respectively. This study describes a thin asymmetrical design of solid electrolyte to address these shortcomings. In this architecture, a rigid ceramic-layer modified with an ultrathin polymer is toward Li-metal to accomplish dendrite-suppression of Li-anode, and a soft polymer-layer spreads over the exterior and interior of cathode to endow connected interface simultaneously. This ingenious arrangement endows solid Li-metal batteries with extremely high Coulombic efficiency and cyclability. This work will open up one avenue for realizing safe and long-life energy storage systems.

Original languageEnglish
Pages (from-to)82-85
Number of pages4
JournalJournal of the American Chemical Society
Volume140
Issue number1
DOIs
StatePublished - 10 Jan 2018

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