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Flexible and freestanding manganese/iron oxide carbon nanofibers for supercapacitor electrodes

Authors
Samuel, EdmundAldalbahi, AliEl-Newehy, MohamedEl-Hamshary, HanyYoon, Sam S.
Issue Date
1-7월-2022
Publisher
ELSEVIER SCI LTD
Keywords
Bimetallic oxide; Manganese iron oxide; Carbon nanofiber; Electrospinning; Supercapacitor
Citation
CERAMICS INTERNATIONAL, v.48, no.13, pp.18374 - 18383
Indexed
SCIE
SCOPUS
Journal Title
CERAMICS INTERNATIONAL
Volume
48
Number
13
Start Page
18374
End Page
18383
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/142904
DOI
10.1016/j.ceramint.2022.03.106
ISSN
0272-8842
Abstract
In this study, freestanding carbon nanofibers embedded with bimetallic manganese-iron oxide are fabricated for flexible supercapacitor applications via electrospinning. A polyacrylonitrile solution is used as the carbon source, and poly(methyl methacrylate) functions as a sacrificial template to produce microporous carbon nanofibers. The concentrations of manganese acetate and iron acetylacetonate are varied to determine the fabrication conditions for maximal electrochemical performance. The optimized supercapacitor cell exhibits a capacitance of 467 F g(-1) at a current density of 1 A g(-1) and a capacitance retention of 94% at the end of N = 10,000 cycles. The higher mechanical durability of the electrode is confirmed by the absence of electrochemical deterioration at the end of performing 500 bending cycles. Overall, the sample comprising carbon nanofibers, in which the optimal amount of manganese-iron oxide is embedded, has the required pseudocapacitive characteristics and is an interesting choice for high-energy-storage supercapacitor electrodes.
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공과대학 (기계공학부)
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