High electrochemical activity of Li2S2 linking two-dimensional tungsten boride nanosheet enables high-loading and long-lasting lithium-sulfur batteries

Yuwei Zhao, Jing Li, Jianglu Xiang, Rong Wu, Chongguang Lyu, Huifang Ma, Xuefen Song, Junran Zhang, Lin Wang, Chenyang Zha

Research output: Contribution to journalArticlepeer-review

21 Scopus citations

Abstract

The Li2S-based cathodes with a high theoretical capacity of 1,166 mAh/g are regarded as the commercially available lithium-sulfur battery that can be coupled with Li-free anodes to avoid the safety concern of lithium metal. However, the instinct Li2S passivation leads to a high activation potential and low sulfur utilization with the notorious polysulfide migration. Herein, the single-atom tailoring strategy in designing liquid Li2S2 catholyte is created without the use of any complicated manufacturing processes or additives, where the Li2S2 cell enables the 3.0 V activation voltage without potential barrier. Meanwhile, the conductive and polar tungsten boride offer the active center to anchor polysulfides migration. As expected, the tungsten boride-Li2S2 cathode exhibits excellent cycling stability, impressive cycling performance without initial potential barrier.

Original languageEnglish
Article number100970
JournalMaterials Today Energy
Volume25
DOIs
StatePublished - Apr 2022

Keywords

  • Activation voltage
  • High area capacity
  • Li2S2
  • Long cycling performance
  • Wet chemistry

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