中文
Announcement
More
Progress in Chemistry 2010, Vol. 22 Issue (08): 1610-1618 Previous Articles   Next Articles

• Review •

Conducting Polymers as Electrode Materials for Supercapacitors

Tu Liangliang  Jia Chunyang**   

  1. (State key Laboratory of Electronic Thin Films and Integrated Devices, School of Microelectronics and Solid-State Electronics, University of Electronic Science and Technology of China, Chengdu 610054, China)
  • Received: Revised: Online: Published:
  • Contact: Chunyang Jia E-mail:cyjia@uestc.edu.cn
PDF ( 5236 ) Cited
Export

EndNote

Ris

BibTeX

Conducting polymers (polyaniline, polypyrrole and polythiophene) as electrode materials for supercapacitor have been attracted great interest due to their low cost, high capacity, rapid charge and discharge, environmental friendliness and safety. In this paper, conducting polymers and hybrid materials of conducting polymers and inorganic materials (carbon materials / metal oxide materials) as electrode materials for supercapacitor have been reviewed, it is believed that the conducting polymers with nanostructures and the hybrid materials of conducting polymers and inorganic nanomaterials are the important research directions of electrode materials for supercapacitor.

Contents 
1 Introduction 
2 The mechanism of storge energy of supercapacitor 
3 Electrode materials of supercapacitor based on polyaniline 
4 Electrode materials of supercapacitor based on polypyrrole 
5 Electrode materials of supercapacitor based on polythiophene 
6 Electrode materials of supercapacitor based on hybrid materials 
7 Conclusions and outlook

[1 ] Huang J,Sumpter B G,Meunier V. Chem. Eur. J. ,2008,14
(22) : 6614—6626
[2 ] Park J H,Ko J M,Park O O,et al. J. Power Sources,2002,
105(1) : 20—25
[3 ] Becker H E. US 2800616,1957
[4 ] Ktz R,Carlen M. Electrochim. Acta,2000,45 ( 15 /16 ) :
2483—2498
[5 ] Amarnath C A,Chang J H,Kim D, et al. Mater. Chem.
Phys. ,2009,113(1) : 14—17
[6 ] Zhou S Y,Li X H,Wang Z X,et al. Nonferrous Met. Soc.
China,2007,17(6) : 1328—1333
[7 ] Burke A. J. Power Sources,2000,91(1) : 37—50
[8 ] Tao F, Shen Y Z, Liang Y Y, et al. J. Solid State
Electrochem. ,2007,11(6) : 853—858
[9 ] Gutmann G. J. Power Sources,1999,84(2) : 275—279
[10] Hu C C,Tsou T W. J. Power Sources,2003,115 (1 ) : 179—
186
[11] Lota K,Khomenko V,Frackowiak E. J. Phys. Chem. Solids,
2004,65(2 /3) : 295—301
[12] Kalpana D,Renganathan N G,Pitchumani S. J. Power Sources,
2006,157(1) : 621—623
[13] Liu C G,Fang H T,Li F,et al. J. Power Sources,2006,160
(1) : 758—761
[14] Wu N L,Wang S Y,Han C Y,et al. J. Power Sources,2003,
113(1) : 173—178
[15] Wohlfahrt-Mehrens M,Schenk J,Wilde P M,et al. J. Power
Sources,2002,105(2) : 182—188
[16] Patil U M,Salunkhe R R,Gurav K V,et al. Appl. Surf. Sci. ,
2008,255(5) : 2603—2607
[17] Hu C C,Chang K H,Wang C C. Electrochim. Acta,2007,52
(13) : 4411—4418
[18] Chen L M,Lai Q Y,Hao Y J,et al. J. Alloys Compd. ,2009,
467(1 /2) : 465—471
[19] Mastragostino M, Arbizzani C, Soavi F. Solid State Ionics,
2002,148(3 /4) : 493—498
[20] Sung J H,Kim S J,Lee K H. J. Power Sources,2003,124
(1) : 343—350
[21] 张娜( Zhang N ) , 张宝宏( Zhang B H ) . 电池( Battery
Bimonthly) ,2003,33(5) : 330—332
[22] Park J H,Ko J M,Park O O,et al. J. Power Sources,2002,
105(1) : 20—25
[23] Mi H Y,Zhang X G,Ye X G,et al. J. Power Sources,2008,
176(1) : 403—409
[24] Li D,Huang J X B. Kaner R. Acc. Chem. Res. ,2009,42
(1) : 135—145
[25] Ryu K S,Lee Y,Han K S,et al. Solid State Ionics,2004,175
(1 /4) : 765—768
[26] Zhou H H, Chen H, Luo S L, et al. J. Solid State
Electrochem. ,2005,9(8) : 574—580
[27] Wang D W,Li F,Zhao J P,et al. ACS Nano,2009,3 ( 7 ) :
1745—1752
[28] Subramania A,Subbarao L D. Polym. Adv. Technol. ,2008,
19 (7) : 725—727
[29] Ryu K S,Wu X L,Lee Y G,et al. J. Appl. Polym. Sci. ,
2003,89(5) : 1300—1304
[30] Gupta V,Miura N. Mater. Lett. ,2006,60(12) :1466—1469
[31] Raman G,Sangaraju S,Aharon G. Synth. Met. ,2008,158
(21 /24) : 848—853
[32] Sivaraman P,Rath S K,Hande V R,et al. Synth. Met. ,2006,
156(16 /17) : 1057—1064
[33] Cui L,Li J,Zhang X G. Mater. Lett. ,2009,63 ( 8 ) : 683—
686
[34] Mokrane S, Makhloufi L, Alonso-Vante N. J. Solid State
Electrochem. ,2008,12(5) : 569—574
[35] Kim B C,Ko J M,Wallace G G. J. Power Sources,2008,177
(2) : 665—668
[36] Sharma R K,Rastogi A C,Desu S B. Electrochem. Commun. ,
2008,10(2) : 268—272
[37] Ramya R,Sangaranarayanan M V. J. Chem. Sci. ,2008,120
(1) : 25—31
[38] Sun W,Chen X Y. J. Power Sources,2009,193 ( 2 ) : 924—
929
[39] Biso M,Mastragostino M,Montanino M,et al. Electrochim.
Acta,2008,53(27) : 7967—7971
[40] Kim H J, Koizhaiganova R, Vasudevan T, et al. Adv.
Technol. ,2009,20(9) : 736—741
[41] Ferraris J P,Eissa M M,Brotherston I D,et al. Chem. Mater. ,
1998,10(11) : 3528—3535
[42] Chen L,Cuan C Y,Bo G,et al. J. Solid State Electrochem. ,
2009,13(12) :1925—1933
[43] Liu K K,Hu Z L,Xue R,et al. J. Power Sources,2008,179
(2) : 858—862
[44] Patra S,Munichandraiah N. J. Appl. Polym. Sci. ,2007,106
(2) : 1160—1171
[45] Bhat D K,Kumar M S. J. Mater Sci,2007,42 (19 ) : 8158—
8162
[46] Liu R,Cho S I,Lee S B. Nanotechnology,2008,19(21) : art.
no. 215710
[47] Taberna P L,Chevallier G,Simon P,et al. Mater. Res. Bull. ,
2006,41(3) : 478—484
[48] Wang K X,Wang Y G,Wang Y R,et al. J. Phys. Chem. C,
2009,113 (3) : 1093—1097
[49] Vaillant J,Monica L C,Karina C G,et al. Prog. Solid State
Chem. ,2006,34(2 /4) : 147—159
[50] Li L X,Song H H,Zhang Q C,et al. J. Power Sources,2009,
187(1) : 268—274
[51] Kim J H,Lee Y S,Sharma A K,et al. Electrochim. Acta,
2006,52(4) : 1727—1732
[52] Cebeci F ,Sezer E,Sarac A S. Electrochim. Acta,2009,54
(26) : 6354—6360
[53] Gupta V,Miura N. Electrochim. Acta,2006,52 (4 ) : 1721—
1726
[54] Sivakkumar S R,Kim W J,Choi J A,et al. J. Power Sources,
2007,171(2) : 1062—1068
[55] Zhou C F,Kumar S. Chem. Mater. ,2005,17 ( 8 ) : 1997—
2002
[56] Jiyoung O,Mikhail E K,Kim B G,et al. Synth. Met. ,2008,
158(15) : 638—641
[57] Fang Y P,Liu J W,Deok J Y,et al. J. Power Sources,2010,
195(2) : 674—679
[58] Chen L,Yuan C Z,Dou H,et al. Electrochim. Acta,2009,54
(8) : 2335—2341
[59] Sun L J,Liu X X,Lau K K,et al. Electrochim. Acta,2008,
53(7) : 3036—3042
[60] Hu Z A,Xie Y L,Wang Y X,et al. Mater. Chem. Phys. ,
2009,114(2 /3) : 990—995
[61] Song R Y,Jun H P,Sivakkumar S R,et al. J. Power Sources,
2007,166(1) : 297—301
[62] Mallouki M, Tran-Van F, Sarrazin C, et al. J. Solid State
Electrochem. ,2007,11(3) : 398—406
[63] Graeme M S,Bhavana A D,Michael S F. Langmuir,2008,24
(3) : 1064—1069
[64] Zang J F,Bao S J,Li C M,et al. J. Phys. Chem. C,2008,112
(38) : 14843—14847
[65] Murugan A V,Viswanath A K. J. Appl. Phys,2006,100,art.
no. 074319
[66] Huang L M,Wen T C,Gopalan A. Electrochim. Acta,2006,
51(17) : 3469—3476
[67] Fan L Z,Hu Y S,Maier J,et al. Adv. Funct. Mater,2007,
17(16) : 3083—3087
[68] Deng M G,Yang B C,Hu Y D. J. Mater. Sci. ,2005,40
(18) : 5021—5023
[69] Ali I N,Dawn T H T,John D M. Synth. Met. ,2005,152(1 /3) : 129—132
[70] Xiao Q F,Zhou X. Electrochim. Acta,2003,18 ( 5 ) : 575—
580
[71] Frackowiak E, Khomenko V, Jurewicz K,et al. J. Power
Sources,2006,153(2) : 413—418
[72] Julien V,Monica L C,Karina C G,et al. Prog. Solid State
Chem. ,2006,34(2 /4) : 147—159
[73] Lu J F,Wang L,Lai Q Y,et al. J. Solid State Electrochem. ,
2009,13(12) : 1803—1810
[74] Florence F,Daniel B. J. Phys. Chem. B,1999,103 ( 42 ) :
9044—9054
[75] Xu Y L,Wang J,Sun W,et al. J. Power Sources,2006,159
(1) : 370—373
[76] Wang J,Xu Y L,Chen X,et al. J. Power Sources,2007,163
(2) : 1120—1125
[77] Mi H Y,Zhang X G,Ye X G,et al. J. Power Sources,2008,
176(1) : 403—409

[1] Xin Pang, Shixiang Xue, Tong Zhou, Hudie Yuan, Chong Liu, Wanying Lei. Advances in Two-Dimensional Black Phosphorus-Based Nanostructures for Photocatalytic Applications [J]. Progress in Chemistry, 2022, 34(3): 630-642.
[2] Caiwei Wang, Dongjie Yang, Xueqing Qiu, Wenli Zhang. Applications of Lignin-Derived Porous Carbons for Electrochemical Energy Storage [J]. Progress in Chemistry, 2022, 34(2): 285-300.
[3] Yang Chen, Xiaoli Cui. Titanium Dioxide Anode Materials for Lithium-Ion Batteries [J]. Progress in Chemistry, 2021, 33(8): 1249-1269.
[4] Xiangye Li, Tianjiao Bai, Xin Weng, Bing Zhang, Zhenzhen Wang, Tieshi He. Application of Electrospun Fibers in Supercapacitors [J]. Progress in Chemistry, 2021, 33(7): 1159-1174.
[5] Xuemei Wei, Zhanwei Ma, Xinyuan Mu, Jinzhi Lu, Bin Hu. Catalyst in Acetylene Carbonylation: From Homogeneous to Heterogeneous [J]. Progress in Chemistry, 2021, 33(2): 243-253.
[6] Chuxuan Yan, Qinglin Li, Zhengqi Gong, Yingzhi Chen, Luning Wang. Organic Semiconductor Nanostructured Photocatalysts [J]. Progress in Chemistry, 2021, 33(11): 1917-1934.
[7] Sha Tan, Jianzhong Ma, Yan Zong. Preparation and Application of Poly(3,4-ethylenedioxythiophene)∶Poly(4-styrenesulfonate)/Inorganic Nanocomposites [J]. Progress in Chemistry, 2021, 33(10): 1841-1855.
[8] Jianlin Shi, Zile Hua. Condensed State Chemistry in the Synthesis of Inorganic Nano- and Porous Materials [J]. Progress in Chemistry, 2020, 32(8): 1060-1075.
[9] Qing Wu, Yiyuan Tang, Miao Yu, Yueying Zhang, Xingmei Li. Stimuli-Responsive DNA Nanostructure Drug Delivery System Based on Tumor Microenvironment [J]. Progress in Chemistry, 2020, 32(7): 927-934.
[10] Zhan Wu, Xiaohan Li, Aowei Qian, Jiayu Yang, Wenkui Zhang, Jun Zhang. Electrochromic Energy-Storage Devices Based on Inorganic Materials [J]. Progress in Chemistry, 2020, 32(6): 792-802.
[11] Shaofei Zhao, Peng Liu, Gao Cheng, Lin Yu, Huaqiang Zeng. Preparation and Pseudocapacitor Properties of Self-Supported Nickel Sulfides Electrode Materials [J]. Progress in Chemistry, 2020, 32(10): 1582-1591.
[12] Guobin Tong, Lei E, Zhou Xu, Chunhui Ma, Wei Li, Shouxin Liu. Preparation, Modification and Application of Carbon Materials Based on Ionic Liquids [J]. Progress in Chemistry, 2019, 31(8): 1136-1147.
[13] Shaoming Qiao, Naibao Huang, Zhengyuan Gao, Shixian Zhou, Yin Sun. Nickel-Manganese Binary Metal Oxide as Electrode Materials for Supercapacitors [J]. Progress in Chemistry, 2019, 31(8): 1177-1186.
[14] Jie Liu, Yuan Zeng, Jun Zhang, Haijun Zhang, Jianghao Liu. Preparation, Structures and Properties of Three-Dimensional Graphene-Based Materials [J]. Progress in Chemistry, 2019, 31(5): 667-680.
[15] Yun Zhao, Yuqiong Kang, Yuhong Jin, Li Wang, Guangyu Tian, Xiangming He. Silicon-Based and -Related Materials for Lithium-Ion Batteries [J]. Progress in Chemistry, 2019, 31(4): 613-630.