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Updated: Sep 26, 2025

Synthesis of Metal Nanoparticles Supported on Carbon Nanotube with Doped Co and N Atoms and its Catalytic Applications in Hydrogen Production
Published on: December 6, 2021
Facile hydrothermal synthesis of cobaltosic sulfide nanorods for high performance supercapacitors
Yin Song1, Yuanhao Ding1, Chenghua Yang1
1School of Applied Physics and Materials, Wuyi University Jiangmen 529020 PR China wangfux91@126.com.
Abstract:
With high reactivity, electrical conductivity, theoretical specific capacitance and well redox reversibility, transition metal sulfides are considered as a promising anode material for supercapacitors. Hence, we designed a simple two-step hydrothermal process to grow Co4S3 nanorod arrays in situ on flexible carbon cloth substrates. Benefited from the larger specific surface area of nanoarrays, the binder-free Co4S3 electrode demonstrates a higher specific capacity of 1.97 F cm-2 at a current density of 2 mA cm-2, while the Co3O4 electrode has a capacity of only 0.07 F cm-2 at the same current density. Surprisingly, at a high scan rate of 200 mV s-1, the synthesized Co4S3 electrode still maintains almost 100% of its initial capacitance after 5000 cycles. Moreover, when using the prepared Co4S3 and MnO2 electrode as the anode and cathode, the fabricated flexible supercapacitor obtains a high volumetric energy density of 0.87 mW h cm-3 (power density of 0.78 W cm-3) and a peak power density of 0.89 W cm-3 (energy density of 0.50 mW h cm-3). The excellent electrochemical properties imply that there is a large market for the prepared materials in flexible energy storage devices.

