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Updated: Sep 13, 2026

Zinc-Sponge Battery Electrodes that Suppress Dendrites
Published on: September 29, 2020
Fiber electrode fabrication from spent graphite for Zn-ion batteries
Nakarin Subjalearndee1, Jirada Chanpriang2, Phrutsakorn Thongkrairat1
1National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA), 111 Thailand Science Park Phahonyothin Rd., Klong Nueng, Klong Luang Pathumthani 12120 Thailand.
Abstract:
The growth of the electric vehicle industry has been driven by increasing demand for sustainable transportation across various sectors. To fully transition to the era of electric vehicles, minimizing the usage of scarce and expensive metals in Li-ion batteries and developing effective battery recycling processes are two major challenges. Extensive research has focused on recycling cathodic parts of batteries, whereas comparatively little attention has been paid to anodes, primarily because graphite has a much lower value than the metals in cathodes, such as lithium, cobalt, and nickel. In this work, we established and proposed a sustainable alternative by recycling spent graphite from industrial lithium-ion battery recycling processes into fiber electrodes for Zn-ion batteries. The spent graphite was initially characterized and oxidized into graphene oxide (S_GO) before fabricating fibers via a facile and cost-effective wet-spinning technique. After chemical reduction, the reduced graphene oxide fibers were coated with MnO2 and carbon black to obtain a fiber cathode. The fiber cathode is then assembled into a Zn-ion battery along with a Zn wire anode and xanthan gum gel electrolyte with 2 M ZnSO4 and 0.2 M MnSO4. The Zn-ion battery presented a maximum discharge capacity of ∼160 mAh g-1 at 0.2C over 100 cycles.

