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Stable Lithium Plating and Stripping Enabled by a LiPON Nanolayer on PP Separator

  • Yuncong Pang
  • , Min Guan
  • , Yilan Pan
  • , Mao Tian
  • , Kai Huang
  • , Chunzhi Jiang
  • , Andrew Xiang
  • , Xinquan Wang
  • , Yongji Gong*
  • , Yong Xiang*
  • , Xiaokun Zhang*
  • *Corresponding author for this work
  • University of Electronic Science and Technology of China

Research output: Contribution to journalArticlepeer-review

Abstract

The practical application of the Li metal anode (LMA) is hindered by its low coulombic efficiency and dendrite formation. Although solid-state electrolytes hold promise as ideal partners for LMA, their effectiveness is limited by the poor workability and ionic conductivity. Herein, a modified separator combining the rapid Li+ transport of a liquid electrolyte and the interfacial stability of a solid-state electrolyte is explored to realize stable cycling of the LMA. A conformal nanolayer of LiPON is coated on a polypropylene separator by a scalable magnetron sputtering method, which is compatible with current Li-ion battery production lines and promising for the practical applications. The resulting LMA–electrolyte/separator interface is Li+-conductive, electron-insulating, mechanically and chemically stable. Consequently, Li|Li cells maintain stable dendrite-free cycling with overpotentials of 10 and 40 mV over 2000 h at 1 and 5 mA cm-2, respectively. Additionally, the Li|LiFePO4 full cells achieve a capacity retention of 92% after 550 cycles, confirming its application potential.

Original languageEnglish
Article number2104832
JournalSmall
Volume18
Issue number26
DOIs
StatePublished - 1 Jul 2022

Keywords

  • Li dendrites
  • Li metal anodes
  • Li metal batteries
  • coulombic efficiencies
  • separator modifications
  • solid electrolytes

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