One-Step Solvothermal Synthesis by Ethylene Glycol to Produce N-rGO for Supercapacitor Applications

Rahman, M.O. and Nor, N.B.M. and Sawaran Singh, N.S. and Sikiru, S. and Dennis, J.O. and Shukur, M.F.B.A. and Junaid, M. and Abro, G.E.M. and Siddiqui, M.A. and Al-Amin, M. (2023) One-Step Solvothermal Synthesis by Ethylene Glycol to Produce N-rGO for Supercapacitor Applications. Nanomaterials, 13 (4).

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Abstract

Graphene and its derivatives have emerged as peerless electrode materials for energy storage applications due to their exclusive electroactive properties such as high chemical stability, wettability, high electrical conductivity, and high specific surface area. However, electrodes from graphene-based composites are still facing some substantial challenges to meet current energy demands. Here, we applied one-pot facile solvothermal synthesis to produce nitrogen-doped reduced graphene oxide (N-rGO) nanoparticles using an organic solvent, ethylene glycol (EG), and introduced its application in supercapacitors. Electrochemical analysis was conducted to assess the performance using a multi-channel electrochemical workstation. The N-rGO-based electrode demonstrates the highest specific capacitance of 420 F g�1 at 1 A g�1 current density in 3 M KOH electrolyte with the value of energy (28.60 Whkg�1) and power (460 Wkg�1) densities. Furthermore, a high capacitance retention of 98.5 after 3000 charge/discharge cycles was recorded at 10 A g�1. This one-pot facile solvothermal synthetic process is expected to be an efficient technique to design electrodes rationally for next-generation supercapacitors. © 2023 by the authors.

Item Type: Article
Additional Information: cited By 1
Depositing User: Mr Ahmad Suhairi UTP
Date Deposited: 04 Jun 2024 14:11
Last Modified: 04 Jun 2024 14:11
URI: https://khub.utp.edu.my/scholars/id/eprint/18839

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