Determination of the specific capacitance of conducting polymer/nanotubes composite electrodes using different cell configurations

被引:605
作者
Khomenko, V
Frackowiak, E
Béguin, F
机构
[1] Univ Orleans, CNRS, CRMD, F-45071 Orleans, France
[2] Poznan Univ Tech, PL-60965 Poznan, Poland
关键词
supercapacitor; conducting polymers; carbon nanotubes; polypyrrole; polyaniline; asymmetric capacitor;
D O I
10.1016/j.electacta.2004.10.078
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Composite materials containing 20 wt.% of multiwalled carbon nanotubes (MWNTs) and 80 wt.% of chemically formed conducting polymers (ECP) as polyaniline (PANI) and polypyrrole (PPy) have been prepared and used for supercapacitor electrodes. The well conducting properties of MWNTs and their available mesoporosity allow a good charge propagation in the composites. Moreover, due to the good resiliency of MWNTs, an excellent stability of the supercapacitor electrodes is observed. It has been shown that the capacitance values for the composites strongly depend on the cell construction. In the case of three electrode cells, extremely high values can be found from 250 to 1100 F/g, however in the two electrode cell much smaller specific capacitance values of 190 F/g for PPy/MWNTs and 360 F/g for PANI/MWNTs have been measured. It highlights the fact that only two-electrode cells allow a good estimation of materials performance in electrochemical capacitors. The applied voltage was found to be the key factor influencing the specific capacitance of nanocomposites. For operating each electrode in its optimal potential range, asymmetric capacitors have been built with PPy/MWNTs as negative and PANI/MWNTs as positive electrodes giving capacitance values of 320 F/g per electrode material. (c) 2004 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2499 / 2506
页数:8
相关论文
共 21 条
[1]   High-capacitance supercapacitor using a nanocomposite electrode of single-walled carbon nanotube and polypyrrole [J].
An, KH ;
Jeon, KK ;
Heo, JK ;
Lim, SC ;
Bae, DJ ;
Lee, YH .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2002, 149 (08) :A1058-A1062
[2]   Study of conductivity of polypyrrol-poly(vinyl alcohol) composites obtained photochemically [J].
Campomanes, R ;
Bittencourt, E ;
Campos, JSC .
SYNTHETIC METALS, 1999, 102 (1-3) :1230-1231
[3]   Electrochemical synthesis of polypyrrole films over each of well-aligned carbon nanotubes [J].
Chen, JH ;
Huang, ZP ;
Wang, DZ ;
Yang, SX ;
Li, WZ ;
Wen, JG ;
Ren, ZF .
SYNTHETIC METALS, 2001, 125 (03) :289-294
[4]  
Conway B. E., 1999, ELECTROCHEMICAL SUPE, DOI DOI 10.1007/978-1-4757-3058-6
[5]   High yield of pure multiwalled carbon nanotubes from the catalytic decomposition of acetylene on in-situ formed cobalt nanoparticles [J].
Delpeux, S ;
Szostak, K ;
Frackowiak, E ;
Bonnamy, S ;
Béguin, F .
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2002, 2 (05) :481-484
[6]   Carbon materials for the electrochemical storage of energy in capacitors [J].
Frackowiak, E ;
Béguin, F .
CARBON, 2001, 39 (06) :937-950
[7]   Nanotubular materials as electrodes for supercapacitors [J].
Frackowiak, E ;
Jurewicz, K ;
Szostak, K ;
Delpeux, S ;
Béguin, F .
FUEL PROCESSING TECHNOLOGY, 2002, 77 :213-219
[8]   Nanotubular materials for supercapacitors [J].
Frackowiak, E ;
Jurewicz, K ;
Delpeux, S ;
Béguin, F .
JOURNAL OF POWER SOURCES, 2001, 97-8 :822-825
[9]   ON THE MECHANISM OF ELECTROCHEMICAL SWITCHING IN FILMS OF POLYANILINE [J].
GOTTESFELD, S ;
REDONDO, A .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1987, 134 (01) :271-272
[10]   Well-dispersed single-walled carbon nanotube/polyaniline composite films [J].
Huang, JE ;
Li, XH ;
Xu, JC ;
Li, HL .
CARBON, 2003, 41 (14) :2731-2736