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Constructing highly safe and long-life calcium ion batteries based on hydratedvanadium oxide cathodes featuring a pillar structure

  • Chun-Fang Wang
  • , Shi-Wei Zhang
  • , Lan Huang
  • , Yuan-Min Zhu
  • , Feng Liu*
  • , Jian-Chuan Wang*
  • , Li-Ming Tan
  • , Chun-Yi Zhi
  • , Cui-Ping Han*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

Calcium-ion batteries (CIBs) have generated intense interest due to the growing demand for safer, cheaper, and large-scale energy storage systems. However, their development is still in its infancy, owing to the lack of suitable cathodes for sustaining reversible Ca2+ intercalation/deintercalation. Herein, layered H2V3O8 (HVO) with Zn2+ pre-insertion (ZHVO) is reported as a high-rate and highly durable cathode material for CIBs. The existence of Zn2+ and H2O pillars could expand the interlayer spacing up to 1.8 nm, which is favorable for the diffusion of bulky Ca2+. The formation of Zn–O bonds facilitates electron transfer and enhances electrical conduction. Consequently, the ZHVO cathode achieves superior capacity performance (213.9 mAh·g−1 at 0.2 A·g−1) and long lifespan (78.3% for 1,000 cycles at 5 A·g−1) compared to pristine HVO. Density functional theory (DFT) calculations revealed that Zn2+ moved during Ca2+ intercalation, thereby reducing the diffusion energy barrier and facilitating Ca2+ diffusion. Finally, a safe aqueous calcium ion cell was successfully assembled. Graphical abstract: (Figure presented.) © Youke Publishing Co.,Ltd 2024.
Original languageEnglish
Pages (from-to)2597-2612
JournalRare Metals
Volume43
Issue number6
DOIs
Publication statusPublished - 9 Apr 2024

Research Keywords

  • Calcium-ion batteries
  • Cathode materials
  • Layered structure
  • Multivalent batteries
  • Vanadium oxide

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