JOURNAL ARTICLE

Gradient StructuredSeparator Enables Stable AqueousZinc Metal Batteries

Abstract

Developing a functional separator is an important strategy to improve the electrochemical performance of the Zn anode by suppressing the Zn dendrite growth and parasitic side reactions, thus advancing the aqueous zinc-ion batteries. Herein, we experimentally realize functional separator with gradient-structure based on CeF3 nanoparticles functionalized glass fibers. The experimental and theoretical results confirmed that the functional separator can tailor the Zn2+ flux and restrain SO42– transport, promoting dense Zn deposition. The strong interaction between CeF3 nanoparticles and H2O separates Zn2+ and H2O at the electrolyte/Zn anode interface, suppressing side reactions. Consequently, the Zn||Zn with this separator achieves excellent cycling stability of 2500 h at 1 mA cm–2 and 1 mAh cm–2 and 1000 h at 5 mA cm–2 and 5 mAh cm–2. This design of a functionalized separator provides a distinctive solution for the development of aqueous zinc-ion batteries.

Keywords:
Separator (oil production) Anode Aqueous solution Nanoparticle Zinc Electrochemistry

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Topics

Advanced battery technologies research
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Membrane-based Ion Separation Techniques
Physical Sciences →  Engineering →  Biomedical Engineering
Advancements in Battery Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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