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Development and Investigation of a NASICON-Type High-Voltage Cathode Material for High-Power Sodium-Ion Batteries.

Mingzhe ChenWeibo HuaJin XiaoDavid CortieXiaodong GuoEnhui WangQinfen GuZhe HuSylvio IndrisXiao-Lin WangShu-Lei ChouShi-Xue Dou
Published in: Angewandte Chemie (International ed. in English) (2020)
Herein, we introduce a 4.0 V class high-voltage cathode material with a newly recognized sodium superionic conductor (NASICON)-type structure with cubic symmetry (space group P21 3), Na3 V(PO3 )3 N. We synthesize an N-doped graphene oxide-wrapped Na3 V(PO3 )3 N composite with a uniform carbon coating layer, which shows excellent rate performance and outstanding cycling stability. Its air/water stability and all-climate performance were carefully investigated. A near-zero volume change (ca. 0.40 %) was observed for the first time based on in situ synchrotron X-ray diffraction, and the in situ X-ray absorption spectra revealed the V3.2+ /V4.2+ redox reaction with high reversibility. Its 3D sodium diffusion pathways were demonstrated with distinctive low energy barriers. Our results indicate that this high-voltage NASICON-type Na3 V(PO3 )3 N composite is a competitive cathode material for sodium-ion batteries and will receive more attention and studies in the future.
Keyphrases
  • ion batteries
  • climate change
  • working memory
  • computed tomography
  • mass spectrometry
  • single cell
  • solar cells
  • high intensity
  • density functional theory
  • highly efficient