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Cited 5 time in webofscience Cited 13 time in scopus
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Carbon Materials as a Conductive Skeleton for Supercapacitor Electrode Applications: A Reviewopen access

Authors
Anil Kumar, YedluriKoyyada, GaneshRamachandran, TholkappiyanKim, Jae HongSajid, SajidMoniruzzaman, MdAlzahmi, SalemObaidat, Ihab M.
Issue Date
Mar-2023
Publisher
MDPI
Keywords
carbon materials; supercapacitors; nanoarchitectures; energy storage
Citation
NANOMATERIALS, v.13, no.6
Journal Title
NANOMATERIALS
Volume
13
Number
6
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/87733
DOI
10.3390/nano13061049
ISSN
2079-4991
Abstract
Supercapacitors have become a popular form of energy-storage device in the current energy and environmental landscape, and their performance is heavily reliant on the electrode materials used. Carbon-based electrodes are highly desirable due to their low cost and their abundance in various forms, as well as their ability to easily alter conductivity and surface area. Many studies have been conducted to enhance the performance of carbon-based supercapacitors by utilizing various carbon compounds, including pure carbon nanotubes and multistage carbon nanostructures as electrodes. These studies have examined the characteristics and potential applications of numerous pure carbon nanostructures and scrutinized the use of a wide variety of carbon nanomaterials, such as AC, CNTs, GR, CNCs, and others, to improve capacitance. Ultimately, this study provides a roadmap for producing high-quality supercapacitors using carbon-based electrodes.
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