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High-performance supercapacitors using flexible and freestanding MnOx/carbamide carbon nanofibers

Authors
Samuel, EdmundJo, Hong SeokJoshi, BhayanaPark, Hyun GooKim, Yong IlAn, SeongpilSwihart, Mark T.Yun, Je MoonKim, Kwang HoYoon, Sam S.
Issue Date
30-11월-2017
Publisher
ELSEVIER SCIENCE BV
Keywords
Electrospinning; MnOx/CCNF; Flexible; Supercapacitor
Citation
APPLIED SURFACE SCIENCE, v.423, pp.210 - 218
Indexed
SCIE
SCOPUS
Journal Title
APPLIED SURFACE SCIENCE
Volume
423
Start Page
210
End Page
218
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/81494
DOI
10.1016/j.apsusc.2017.06.098
ISSN
0169-4332
Abstract
We demonstrate the fabrication of a MnOx/carbamide carbon nanofiber (CCNF) composite consisting of MnO particles embedded in CCNFs as a highly flexible and freestanding electrode material for supercapacitors. A sacrificial polymer component, polymethylmethacrylate, included in the precursor solution, pyrolyzes during heating, resulting in pores in the fibers, some of which are filled by the MnO nanocrystals. Carbamide is added to control the size of the MnOx particles as well as to increase the carbon content of the composite and hence its conductivity. The X-ray diffraction and Raman spectra of the composite show that the MnO particles formed have low crystallinity. Transmission electron microscopy confirms that the MnO particles are distributed very uniformly over the CCNFs. Symmetric supercapacitors constructed using electrodes of this composite exhibit specific capacitances of 498 F.g(-1) at a scan rate of 10 mV.s(-1) and 271 F.g(-1) at a current density of 1 A.g(-1). They also exhibit excellent long-term cycling performance, retaining 93% of their initial capacity after 5000 cycles of galvanostatic charging/discharging. (C) 2017 Elsevier B.V. All rights reserved.
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공과대학 (기계공학부)
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