Sponge-Like Microfiber Electrodes for High-Performance Redox Flow Batteries.

Small Methods

Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, 999077, China.

Published: October 2022

AI Article Synopsis

  • Researchers developed a sponge-like microfiber carbon electrode for redox flow batteries that has a specific surface area of 853.6 m²/g, optimized for high flow permeability.
  • The electrode's unique structure is created by electrospinning poly(vinyl alcohol)-lignin-polytetrafluoroethylene, followed by oxidation and pyrolysis, with fiber diameters between 5-7 µm and macropores around 26.8 µm.
  • This innovation led to a vanadium redox flow battery that achieved an impressive energy efficiency of 79.1% at 400 mA/cm² and a remarkable capacity retention rate of 99.94% after 2000 cycles, indicating strong potential for energy storage applications.

Article Abstract

Fabricating fiber-based electrodes with a large specific surface area while maintaining high flow permeability is a challenging issue in developing high-performance redox flow batteries. Here, a sponge-like microfiber carbon electrode is reported with a specific surface area of as large as 853.6 m g while maintaining a fiber diameter in the range of 5-7 µm and a macropore size of ≈26.8 µm. The electrode is developed by electrospinning cross-linked poly(vinyl alcohol)-lignin-polytetrafluoroethylene precursors, followed by oxidation and pyrolysis. Applying the as-synthesized electrodes to a vanadium redox flow battery enables the battery to achieve an energy efficiency of 79.1% at the current density of 400 mA cm and a capacity retention rate of 99.94% over 2000 cycles, representing one of the best battery performances in the open literature. The strategy to fabricate sponge-like porous carbon microfibers holds great promise for versatile applications in redox flow batteries and other energy storage systems.

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Source
http://dx.doi.org/10.1002/smtd.202200626DOI Listing

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