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Electrochemical performance of Mg3V2O8 nanoparticles for asymmetric supercapacitoropen access

Authors
Bhagwan, JaiHan, Jeong In
Issue Date
Oct-2025
Publisher
Elsevier Ltd
Keywords
asymmetric supercapacitor; capacitive and diffusion distribution; energy and power densities; Mg<sub>3</sub>V<sub>2</sub>O<sub>8</sub> nanoparticles; supercapacitor
Citation
Journal of Energy Storage, v.133, pp 1 - 12
Pages
12
Indexed
SCIE
SCOPUS
Journal Title
Journal of Energy Storage
Volume
133
Start Page
1
End Page
12
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/58970
DOI
10.1016/j.est.2025.118035
ISSN
2352-152X
2352-1538
Abstract
Designing the efficient and durable electrode materials for energy storage devices is in high demand. In this work, magnesium orthovanadate (Mg3V2O8) nanoparticles are successfully synthesized by simplest and most adoptable coprecipitation method. Further, the prepared Mg3V2O8 nanomaterial is systematically characterized and discussed by various characteristic techniques. Thereafter, Mg3V2O8 nanomaterial is used as electrode material for supercapacitor in LiOH and KOH electrolytes. The high specific capacitance of 340 and 810 F g−1 are obtained in LiOH and KOH electrolytes, respectively at the current density of 1 A g−1. Due to the high electrochemical performance in KOH electrolyte, the supercapacitive performance of Mg3V2O8 is discussed in KOH electrolyte in detail. Furthermore, aqueous asymmetric supercapacitor is designed by Mg3V2O8 (positive electrode) and activated carbon (AC) (negative electrode). Mg3V2O8//AC achieves the high energy density of 36.94 W h kg−1 at the power density of 750 W kg−1. Moreover, four red color LEDs, toy motor fan, digital humidity meter and kitchen timer are powered separately by series connected two aqueous asymmetric supercapacitors. © 2025 Elsevier Ltd
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College of Engineering (Department of Chemical and Biochemical Engineering)
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