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Regulation of Outer Solvation Shell Toward Superior Low-Temperature Aqueous Zinc-Ion Batteries

  • Qianyi Ma
  • , Rui Gao
  • , Yizhou Liu
  • , Haozhen Dou
  • , Yun Zheng
  • , Tyler Or
  • , Leixin Yang
  • , Qingying Li
  • , Qiao Cu
  • , Renfei Feng
  • , Zhen Zhang
  • , Yihang Nie
  • , Bohua Ren
  • , Dan Luo
  • , Xin Wang
  • , Aiping Yu
  • , Zhongwei Chen
  • University of Waterloo
  • South China Normal University
  • University of Saskatchewan

科研成果: 期刊稿件文章同行评审

255 引用 (Scopus)

摘要

Aqueous Zn-ion batteries are well regarded among a next-generation energy-storage technology due to their low cost and high safety. However, the unstable stripping/plating process leading to severe dendrite growth under high current density and low temperature impede their practical application. Herein, it is demonstrated that the addition of 2-propanol can regulate the outer solvation shell structure of Zn2+ by replacing water molecules to establish a “eutectic solvation shell”, which provides strong affinity with the Zn (101) crystalline plane and fast desolvation kinetics during the plating process, rendering homogeneous Zn deposition without dendrite formation. As a result, the Zn anode exhibits promising cycle stability over 500 h under an elevated current density of 15 mA cm−2 and high depth of discharge of 51.2%. Furthermore, remarkable electrochemical performance is achieved in a 150 mAh Zn|V2O5 pouch cell over 1000 cycles at low temperature of −20 °C. This work not only offers a new strategy to achieve excellent performance of aqueous Zn-ion batteries under harsh conditions, but also reveals electrolyte structure designs that can be applied in related energy storage and conversion fields.

源语言英语
文章编号2207344
期刊Advanced Materials
34
49
DOI
出版状态已出版 - 8 12月 2022
已对外发布

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