4.8 Article

Freeze-Tolerant Hydrogel Electrolyte with High Strength for Stable Operation of Flexible Zinc-Ion Hybrid Supercapacitors

期刊

SMALL
卷 18, 期 16, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202200055

关键词

anti-freezing; hydrogel electrolytes; mechanical performance; zinc dendrites; zinc-ion hybrid supercapacitors

资金

  1. Natural Science Foundation of Xinjiang Uygur Autonomous Region [2019D01C075]
  2. National Natural Science Foundation of China [U2003216, 21965033, 21908039, 21805237]
  3. Scientific Research Program of the Higher Education Institution of Xinjiang [XJEDU2019I003]
  4. Anhui Province Overseas Students Innovation Project Selection Funding Program Project [2021LCX034]
  5. Projekt DEAL

向作者/读者索取更多资源

In this study, a freeze-tolerant hydrogel electrolyte with high ionic conductivity and superior mechanical properties was developed for portable zinc-ion hybrid supercapacitors. The hydrogel exhibited excellent durability and stable electrochemical performance at low temperatures.
Constructing ionic conductive hydrogels with diversified properties is crucial for portable zinc-ion hybrid supercapacitors (ZHSCs). Herein, a freeze-tolerant hydrogel electrolyte (AF PVA-CMC/Zn(CF3SO3)(2)) is developed by forming a semi-interpenetrating anti-freezing polyvinyl alcohol-carboxymethyl cellulose (AF PVA-CMC) network filled with the ethylene glycol (EG)-containing Zn(CF3SO3)(2) aqueous solution. The semi-interpenetrating AF PVA-CMC/Zn(CF3SO3)(2) possesses enhanced mechanical properties, realizes the uniform zinc deposition, and impedes the dendrite growth. Notably, the interaction between PVA and EG suppresses the ice crystal formation and prevents freezing at -20 degrees C. Due to these advantages, the designed hydrogel owns high ionic conductivity of 1.73/0.75 S m(-1) at 20/-20 degrees C with excellent tensile/compression strength at 20 degrees C. Impressively, the flexible AF quasi-solid-state ZHSC employing the hydrogel electrolyte achieves a superior energy density at 20/-20 degrees C (87.9/60.7 Wh kg(-1)). It maintains nearly 84.8% of the initial capacity after 10 000 cycles and a low self-discharge rate (1.77 mV h(-1)) at 20 degrees C, together with great tolerance to corrosion. Moreover, this device demonstrates a stable electrochemical performance at -20 degrees C under deformation. The obtained results provide valuable insights for constructing durable hydrogel electrolytes in cold environments.

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