A STUDY OF THE ELECTROCHEMICAL PROPERTIES OF CONDUCTING POLYMERS FOR APPLICATION IN ELECTROCHEMICAL CAPACITORS

被引:384
作者
RUDGE, A [1 ]
RAISTRICK, I [1 ]
GOTTESFELD, S [1 ]
FERRARIS, JP [1 ]
机构
[1] UNIV TEXAS,DEPT CHEM,RICHARDSON,TX 75080
关键词
ULTRACAPACITORS; SUPERCAPACITORS; N-DOPED POLYMERS; CONDUCTING POLYMERS; ELECTRIC VEHICLES; REGENERATIVE BRAKING;
D O I
10.1016/0013-4686(94)80063-4
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Conducting polymers can be doped and dedoped rapidly to high charge density and as a result are potential active materials for use in electrochemical capacitors. We discuss three schemes by which conducting polymers can be utilized in electrochemical capacitors and in the third of these, which employs a conducting polymer that can be both n- and p-doped, high energy and power densities are demonstrated. Polythiophenes can be both n- and p-doped reversibly and we have tested a number of poly-3-arylthiophenes in order to achieve the best n-doping at thick polymer films. We have found that poly-3-(4-fluorophenyl)-thiophene, in a solution of 1moldm(-3) tetramethylammonium trifluoromethanesulfonate in acetonitrile, can be n- and p-doped, both reversibly and to high charge density. Such key properties for high power, energy storage devices have not been demonstrated before with conducting polymer active materials. We propose that the improvement in polymer n-dopability that results from derivitization of thiophene with aryl substituents in the 3-position, is probably achieved thanks to electron transfer from the negatively charged polythiophene backbone to the aryl substituent. This proposal is discussed in the light of modeling information and of voltammetric data. Further supporting information is provided by electron microscopy, impedance spectroscopy and electrochemical quartz crystal microbalance results.
引用
收藏
页码:273 / 287
页数:15
相关论文
共 99 条
[1]  
Armand M., 1983, Journal de Physique Colloque, V44, P551, DOI 10.1051/jphyscol:19833110
[2]   CONDUCTING POLYMERS IN REDOX DEVICES AND INTELLIGENT MATERIALS SYSTEMS [J].
BAUGHMAN, RH .
MAKROMOLEKULARE CHEMIE-MACROMOLECULAR SYMPOSIA, 1991, 51 :193-215
[3]   THE EVOLUTION OF STRUCTURE DURING THE ALKALI-METAL DOPING OF POLYACETYLENE AND POLY (PARA-PHENYLENE) [J].
BAUGHMAN, RH ;
SHACKLETTE, LW ;
MURTHY, NS ;
MILLER, GG ;
ELSENBAUMER, RL .
MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 1985, 118 (1-4) :253-261
[4]   ELECTROCHEMICAL STUDY OF POLY(3-OCTYLTHIOPHENE) FILM ELECTRODES - IMPEDANCE OF THE POLYMER FILM SEMICONDUCTOR ELECTROLYTE INTERFACE [J].
BOBACKA, J ;
GRZESZCZUK, M ;
IVASKA, A .
ELECTROCHIMICA ACTA, 1992, 37 (10) :1759-1765
[5]   EQCM STUDIES OF FILM GROWTH, REDOX CYCLING, AND CHARGE TRAPPING OF NORMAL-DOPED AND PARA-DOPED POLY(THIOPHENE) [J].
BORJAS, R ;
BUTTRY, DA .
CHEMISTRY OF MATERIALS, 1991, 3 (05) :872-878
[6]   POLYMER-FILMS ON ELECTRODES .7. ELECTROCHEMICAL-BEHAVIOR AT POLYPYRROLE-COATED PLATINUM AND TANTALUM ELECTRODES [J].
BULL, RA ;
FAN, FRF ;
BARD, AJ .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1982, 129 (05) :1009-1015
[7]  
BURKE AF, 1992, 2ND P INT SEM DOUBL
[8]  
BURKE AF, 1991, PREPRINTS ANN AUTOMO, V2
[9]  
Buttry D.A., 1991, ELECTROANALYTICAL CH, V17, P1
[10]   A RECHARGEABLE BATTERY EMPLOYING A REDUCED POLYACETYLENE ANODE AND A TITANIUM DISULFIDE CATHODE [J].
CAJA, J ;
KANER, RB ;
MACDIARMID, AG .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1984, 131 (12) :2744-2750