4.8 Article

A self-healing zinc ion battery under -20 °C

Journal

ENERGY STORAGE MATERIALS
Volume 44, Issue -, Pages 517-526

Publisher

ELSEVIER
DOI: 10.1016/j.ensm.2021.11.004

Keywords

Anti-freezing feature; Self-healability; Polyelectrolyte; Zinc ion battery

Funding

  1. NSFC [22109009, 21975027, 22035005, 52073159]
  2. China Postdoctoral Science Foundation [2020M680376]
  3. National Key R&D Program of China [2017YFB1104300]
  4. NSFC-MAECI [51861135202]
  5. NSFC-STINT [21911530143]

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A novel anti-freezing self-healable polyelectrolyte was developed for a self-healable zinc ion battery working at -20 degrees C, demonstrating high specific capacity and remarkable self-healing ability. After three cutting/self-healing cycles at -20 degrees C, this novel battery showed a capacity retention of 90.4%.
Self-healable aqueous batteries can improve their service lifetime and solve safety issues induced by device failure during large deformations at room temperature. M low temperatures (e.g. -20 degrees C), they generally lose most of their electrochemical performance and self-healing function since water molecules in aqueous electrolytes are inevitably frozen. Herein, a simple and effective method is adopted to prepare an anti-freezing and self-healable polyelectrolyte (AF-SH-CPAM) by the in-situ polymerization of acrylamide monomer in a water/ethylene glycol solution. In AF-SH-CPAM, ethylene glycol simultaneously achieves the anti-freezing and self-healing performance of the polyelectrolyte by restraining the icing of water molecules and dynamically adjusting the molecular interactions between polymer chains and water. Based on this polyelectrolyte, a self-healable zinc ion battery working at -20 degrees C is fabricated for the first time by using the gold-sprayed carbon nanotube/polyaniline film as cathode and the zinc foil as anode. This battery can deliver a high specific capacity of 233.9 mAh g(-1) at room temperature, exceeding that of those reported aqueous Zn/polyaniline batteries. More impressively, it also shows the prominent self-healablity with a high capacity retention of 90.4% after three cutting/self-healing cycles at -20 degrees C, presenting a breakthrough in low-temperature self-healing function of aqueous batteries.

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