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CVD-graphene for low equivalent series resistance in rGO/CVD-graphene/Ni-based supercapacitors

Authors
Kwon, Young HwiKumar, SunilBae, JoonhoSeo, Yongho
Issue Date
11-May-2018
Publisher
IOP PUBLISHING LTD
Keywords
supercapacitors; CVD-graphene; rGO; cooling rate; EDLC
Citation
NANOTECHNOLOGY, v.29, no.19
Journal Title
NANOTECHNOLOGY
Volume
29
Number
19
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/3768
DOI
10.1088/1361-6528/aab236
ISSN
0957-4484
Abstract
Reduced equivalent series resistance (ESR) is necessary, particularly at a high current density, for high performance supercapacitors, and the interface resistance between the current collector and electrode material is one of the main components of ESR. In this report, we have optimized chemical vapor deposition-grown graphene (CVD-G) on a current collector (Ni-foil) using reduced graphene oxide as an active electrode material to fabricate an electric double layer capacitor with reduced ESR. The CVD-G was grown at different cooling rates-20 degrees C min(-1), 40 degrees C min(-1) and 100 degrees C min(-1) -to determine the optimum conditions. The lowest ESR, 0.38 Omega, was obtained for a cell with a 100 degrees C min(-1) cooling rate, while the sample without a CVD-G interlayer exhibited 0.80 Omega. The CVD-G interlayer-based supercapacitors exhibited fast CD characteristics with high scan rates up to 10 Vs(-1) due to low ESR. The specific capacitances deposited with CVD-G were in the range of 145.6 F g(-1) -213.8 F g(-1) at a voltage scan rate of 0.05 V s(-1). A quasi-rectangular behavior was observed in the cyclic voltammetry curves, even at very high scan rates of 50 and 100 V s(-1), for the cell with optimized CVD-G at higher cooling rates, i.e. 100 degrees C min(-1).
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