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Three-demensional porous carbon framework coated with one-demensional nanostructured polyaniline nanowires composite for high-performance supercapacitors.

Authors :
Wang, Bin
Zhao, Jing
Zhang, Dongming
Zhang, Hongquan
Cheng, Kui
Ye, Ke
Zhu, Kai
Yan, Jun
Cao, Dianxue
Jiao, Weizhou
Liu, Youzhi
Wang, Guiling
Source :
Applied Surface Science. Apr2019, Vol. 474, p147-153. 7p.
Publication Year :
2019

Abstract

Highlights • 3D porous CF is prepared using sponge as template and C 5 H 6 O 2 as carbon source. • PANI nanowires are deposited at the CF by a facile electrodeposition method. • CF-PANI exhibits good electrochemical performances. • The asymmetric supercapacitor assembled with CF-PANI and CF shows high energy and power densities. Abstract In this paper, three-dimensional (3D) porous carbon framework (CF) is prepared using commercial sponge as template and furfuryl alcohol (C 5 H 6 O 2) as carbon source, through polymerizing and solidifying by oxalic acid (H 2 C 2 O 4) followed by a carbonizing process at high temperature. Then, one-demensional (1D) polyaniline (PANI) nanowires are deposited on the CF substrate by a simple one-step electrodeposition method to obtain CF-PANI energy storage electrode. The CF-PANI maintains initial 3D porous structure as CF substrate with PANI layer, benefiting for the diffusion of electrolyte and the contact between active material and electrolyte. Besides, the carbon skeleton is surrounded by the PANI nanowires, which provide more transfer channels for electrons during the charge/discharge process. The loading mass of PANI on CF is as high as 21.3 mg cm−3, and the gravimetric and volumetric capacitances reach 866 F g−1 and 18.5 F cm−3, respectively, at the scan rate of 2 mV s−1. Moreover, the asymmetric supercapacitor based on CF-PANI as anode electrode and CF as cathode electrode exhibits a high energy density of 44 W h kg−1 at the power density of 800 W kg−1, indicating its promising applications as the electrode material for supercapacitors. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01694332
Volume :
474
Database :
Academic Search Index
Journal :
Applied Surface Science
Publication Type :
Academic Journal
Accession number :
134660758
Full Text :
https://doi.org/10.1016/j.apsusc.2018.04.057