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Progress in Chemistry 2007, Vol. 19 Issue (0203): 325-336 Previous Articles   Next Articles

• Review •

Polymer Field-Effect Transistors:Materials and Devices

Li Rongjin1; Li Hongxiang1;Zhou Xinran2;Hu Wenping 1*   

  1. 1. Beijing National Laboratory for Molecular Sciences, Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100080, China;

    2. College of Electrical and Information Engineering, Hunan University, Changsha 410082, China

  • Received: Revised: Online: Published:
  • Contact: Hu Wenping
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Conducting polymers have attracted particular attention recently in organic field-effect transistors due to the simple process for their devices fabrication and the possibility to make devices of large area. Some devices of conducting polymers even exhibit performance which can be compared with that of amorphous silicon. In this paper, the development history of polymer field-effect transisitors is reviewed. The materials, device fabrication, device structures, device performance characterization and working principles are discussed. Finally, the developing prospects and existing problems of polymer field-effect transistors are also addressed.

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[ 1 ] Barbe D F , Westgate C R. J . Phys. Chem. Solids , 1970 , 31 :2679 —2687
[ 2 ] Tsumura A , Koezuka H , Ando T. Appl . Phys. Lett . , 1986 , 49 :1210 —1212
[ 3 ] Koezuka H , Tsumura A , Ando T. Synth. Met . , 1987 , 18 :699 —704
[ 4 ] Bao Z N , Rogers J A , Katz H E. J . Mater. Chem. , 1999 , 9 :1895 —1904
[ 5 ] Makela T , Jussila S , Kosonen H , et al . Synth. Met . , 2005 ,153 : 285 —288
[ 6 ] Backlund T G, Sandberg H G O , Osterbacka R , et al . Synth.Met . , 2005 , 148 : 87 —91
[ 7 ] Bao Z N , Feng Y, Dodabalapur A , et al . Chem. Mater. , 1997 ,9 : 1299 —1301
[ 8 ] Comiskey B , Albert J D , Yoshizawa H , et al . Nature , 1998 ,394 : 253 —255
[ 9 ] Sirringhaus H , Kawase T , Friend R H , et al . Science , 2000 ,290 : 2123 —2126
[10] Plotner M, Wegener T , Richter S , et al . Synth. Met . , 2004 ,147 : 299 —303
[11] Li S P , Chu D P , Newsome C J , et al . Appl . Phys. Lett . ,2005 , 87 : art . no. 232111
[12] Kawase T , Shimoda T , Newsome C , et al . Thin Solid Films ,2003 , 438 : 279 —287
[13] Kawase T , Sirringhaus H , Friend R H , et al . Adv. Mater. ,2001 , 13 : 1601 —1605
[14] De Gans B J , Schubert U S. Macromol . Rapid Comm. , 2003 ,24 : 659 —666
[15] Naber R C G, de Boer B , Blom P W M, et al . Appl . Phys.Lett . , 2005 , 87 : art . no. 203509
[16] Covington J A , Gardner J W, Briand D , et al . Sens. Actuators B , 2001 , 77 : 155 —162
[17] Eisele I , Doll T , Burgmair M. Sens. Actuators B , 2001 , 78 :19 —25
[18] Someya T , Sekitani T , Iba S , et al . Proc. Natl . Acad. Sci .USA , 2004 , 101 : 9966 —9970
[19] Katz H E. Electroanalysis , 2004 , 16 : 1837 —1842
[20] Huitema H E A , Gelinck G H , van der Putten J B P H , et al .Nature , 2001 , 414 : 599 —599
[21] Sirringhaus H , Tessler N , Friend R H. Synth. Met . , 1999 , 102 :857 —860
[22] Sheraw C D , Zhou L , Huang J R , et al . Appl . Phys. Lett . ,2002 , 80 : 1088 —1090
[23] Forrest S R. Nature , 2004 , 428 : 911 —918
[24] Ling M M, Bao Z. Chem. Mater. , 2004 , 16 : 4824 —4840
[25] Dimitrakopoulos C D , Malenfant P RL. Adv. Mater. , 2002 , 14 :99 —117
[26] Horowitz G. Adv. Mater. , 1998 , 10 : 365 —377
[27] Horowitz G. J . Mater. Chem. , 1999 , 9 : 2021 —2026
[28] Sun Y M, Liu Y Q , Zhu D B. J . Mater. Chem. , 2005 , 15 :53 —65
[29] 肖恺(Xiao K) , 于贵(Yu G) , 刘云圻(Liu Y Q) , 朱道本(Zhu D B) . 科学通报(Chinese Science Bulletin) , 2002 , 47 : 881 —890
[30] 胡文平(Hu W P) , 刘云圻(Liu Y Q) , 朱道本(Zhu D B) . 物理(Physics) , 1997 , 26 : 649 —653
[31] 周桂江( Zhou G J ) , 叶成( Ye C) . 化学通报(Chemistry) ,2002 , 4 : 228 —234
[32] 刘承斌(Liu C B) , 范曲立(Fan Q L) , 黄维(Huang W) , 王讯(Wang X) . 物理(Physics) , 2005 , 34 : 424 —432
[33] 耿延候( Geng Y H) , 田洪坤( Tian H K) . 分子科学学报(Journal of Molecular Science) , 2005 , 21 : 15 —21
[34] Huitema H E A , Gelinck G H , van der Putten J , et al . Adv.Mater. , 2002 , 14 : 1201 —1204
[35] Tecklenburg R , Paasch G, Scheinert S. Adv. Mater. Opt .Electron. , 1998 , 8 : 285 —294
[36] Prigodin V N , Hsu F C , Kim Y M, et al . Synth. Met . , 2005 ,153 : 157 —160
[37] Marinov O , Deen M J , Iniguez B. IEE Proc. 2Circuits Devices Syst . , 2005 , 152 : 189 —209
[38] Garcia P , Pernaut J M, Hapiot P , et al . J . Phys. Chem. , 1997 ,97 : 513 —516
[39] Hill I G, Rajagopal A , Kahn A , et al . Appl . Phys. Lett . ,1998 , 73 : 662 —664
[40] Sirringhaus H , Brown P J , Friend R H , et al . Nature , 1999 ,401 : 685 —688
[41] Baughman R H , Bredas J L , Chance R R , et al . Chem. Rev. ,1982 , 82 : 209 —222
[42] Patil A O , Heeger AJ , Wudl F. Chem. Rev. , 1988 , 88 : 183 —200
[43] McCullough R D , Tristram-Nagle S , Williams S P , et al . J . Am.Chem. Soc. , 1993 , 115 : 4910 —4911
[44] Kobashi M, Takeuchi H. Macromolecules , 1998 , 31 : 7273 —7278
[45] Paloheimo J , Kuivalainen P , Stubb H , et al . Appl . Phys. Lett . ,1990 , 56 : 1157 —1159
[46] Assadi A , Svensson C , Willander M, Ingan?s O. Appl . Phys.Lett . , 1988 , 53 : 195 —197
[47] Sirringhaus H , Brown P J , Friend R H , et al . Synth. Met . ,2000 , 111/112 : 129 —132
[48] Sirringhaus H , Tessler N , Friend R H. Science , 1998 , 280 :1741 —1744
[49] Ong B S , Wu Y, Liu P , et al . J . Am. Chem. Soc. , 2004 ,126 : 3378 —3379
[50] Wu Y O , Liu P , Ong B S , et al . Appl . Phys. Lett . , 2005 , 86 :art . no. 142102
[51] Prosa T J , Winokur M J , Moulton J , Smith P , Heeger A J .Macromolecules , 1992 , 25 : 4364 —4372
[52] Yang C , Orfino F P , Holdcroft S. Macromolecules , 1996 , 29 :6510 —6517
[53] Babel A , Jenekhe S A. Synth. Met . , 2005 , 148 : 169 —173
[54] Trznadel M, Pron A , Zagorska M, et al . Macromolecules , 1998 ,31 : 5051 —5058
[55] Kline R J , McGehee M D , Kadnikova E N , et al . Adv. Mater. ,2003 , 15 : 1519 —1522
[56] Zen A , Pflaum J , Hirschmann S , et al . Adv. Funct . Mater. ,2004 , 14 : 757 —764
[57] Bao Z , Lovinger A J . Chem. Mater. , 1999 , 11 : 2607 —2612
[58] Bao Z , Dodabalapur A D , Lovinger A J . Appl . Phys. Lett . ,1996 , 69 : 4108 —4110
[59] Yang H , Shin TJ , Yang L , et al . Adv. Funct . Mater. , 2005 ,15 : 671 —676
[60] Park J , Park S Y, Shim S O , et al . Appl . Phys. Lett . , 2004 ,85 : 3283 —3285
[61] Brown A R , de Leeuw D M, Havinga E E , et al . Synth. Met . ,1994 , 68 : 65 —70
[62] McCulloch I , Bailey C , Giles M, et al . Chem. Mater. , 2005 ,17 : 1381 —1385
[63] Abdou M S A , Orfino F P , Son Y, et al . J . Am. Chem. Soc. ,1997 , 119 : 4518 —4524
[64] Caronna T , Forte M, Catellani M, et al . Chem. Mater. , 1997 ,9 : 991 —995
[65] Ficker J , von Seggern H , Rost H , et al . Appl . Phys. Lett . ,2004 , 85 : 1377 —1379
[66] Rost H , Ficker J , Alonso J S , et al . Synth. Met . , 2004 , 145 :83 —85
[67] Ficker J , Ullmann A , Fix W, Rost H , Clemens W. J . Appl .Phys. , 2003 , 94 : 2638 —2641
[68] Grell M, Redecker M, Whitehead K S , et al . Liq. Cryst . ,1999 , 26 : 1403 —1407
[69] Sirringhaus H , Wilson R J , Friend R H , et al . Appl . Phys.Lett . , 2000 , 77 : 406 —408
[70] Salleo A , Chabinyc M L , Yang M S , Street R A. Appl . Phys.Lett . , 2002 , 81 : 4383 —4385
[71] Lim E , Jung B J , Lee J , Shim H K, et al . Macromolecules ,2005 , 38 : 4531 —4535
[72] Kim Y M, Lim E , Kang I N , et al . Macromolecules , 2006 , 39 :4081 —4085
[73] Wang F , Luo J , Yang K X, et al . Macromolecules , 2005 , 38 :2253 —2260
[74] Hwang D H , Kim S K, Park M J , et al . Chem. Mater. , 2004 ,16 : 1298 —1303
[75] Babel A , Jenekhe S A. Macromolecules , 2003 , 36 : 7759 —7764
[76] Heeney M, Bailey C , Giles M, et al . Macromolecules , 2004 ,37 : 5250 —5256
[77] Chen M X, Crispin X, Perzon E , et al . Appl . Phys. Lett . ,2005 , 87 : art . no. 252105
[78] Veres J , Ogier S , Lloyd G, et al . Chem. Mater. , 2004 , 16 :4543 —4555
[79] Veres J , Ogier S D , Leeming S W, et al . Adv. Funct . Mater. ,2003 , 13 : 199 —204
[80] Hu W P , Nakashima H , Furukawa K, et al . J . Am. Chem.Soc. , 2005 , 127 : 2804 —2805
[81] Zhu Y, Babel A , Jenekhe S A. Macromolecules , 2005 , 38 :7983 —7991
[82] Graeff C F O , Onmori R K, Guimaraes F E G, et al . Synth.Met . , 1999 , 105 : 151 —153
[83] Brown A R , Jarrett C P , de Leeuw D M, et al . Synth. Met . ,1997 , 88 : 37 —55
[84] Fuchigami H , Tsumura A , Koezuka H. Appl . Phys. Lett . ,1993 , 63 : 1372 —1374
[85] Van Breemen A J J M, Herwig P T , Chlon C H T , et al . Adv.Funct . Mater. , 2005 , 15 : 872 —876
[86] Hulea I N , Brom H B , Houtepen A J , et al . Phys. Rev. Lett . ,2004 , 9316 : art . no. 166601
[87] Zen A , Saphiannikova M, Neher D , et al . Chem. Mater. , 2005 ,17 : 781 —786
[88] Yamamoto T , Kokubo H , Kobashi M, et al . Chem. Mater. ,2004 , 16 : 4616 —4618
[89] Babel A , Jenekhe S A. J . Phys. Chem. B , 2003 , 107 : 1749 —1754
[90] Crouch D J , Skabara PJ , Lohr J E , et al . Chem. Mater. , 2005 ,17 : 6567 —6578
[91] De Leeuw D M, Simenon M M J , Brown A R , et al . Synth.Met . , 1997 , 87 : 53 —59
[92] Jenekhe S A , Johnson P O. Macromolecules , 1990 , 23 : 4419 —4429
[93] Song H H , Fratini A V , Chabinyc M, et al . Synth. Met . , 1995 ,69 : 533 —535
[94] Babel A , Jenekhe S A. Adv. Mater. , 2002 , 14 : 371 —374
[95] Babel A , Jenekhe S A. J . Am. Chem. Soc. , 2003 , 125 :13656 —13657
[96] Babel A , Jenekhe S A. J . Phys. Chem. B , 2002 , 106 : 6129 —6132
[97] Meng H , Chen Y, Wudl F. Macromolecules , 2001 , 34 : 1810 —1816
[98] Zhu Y, Alam M M, Jenekhe S A. Macromolecules , 2003 , 36 :8958 —8968
[99] Janietz S , Barche J , Wedel A , et al . Macromol . Chem. Phys. ,2004 , 205 : 187 —198
[100] Janietz S , Barche J , Wedel A , et al . Macromol . Chem. Phys. ,2004 , 205 : 1916 —1922
[101] Chua L L , Zaumseil J , Chang J F , et al . Nature , 2005 , 434 :194 —199
[102] Meijer E J , de Leeuw D M, Setayesh S , et al . Nat . Mater. ,2003 , 2 : 678 —682
[103] Shkunov M, Simms R , Heeney M, et al . Adv. Mater. , 2005 ,17 : 2608 —2612
[104] Babel A , Wind J D , Jenekhe S A. Adv. Funct . Mater. , 2004 ,14 : 891 —898
[105] Yamamoto T , Yasuda T , Sakai Y, et al . Macromol . Rapid Comm. , 2005 , 26 : 1214 —1217
[106] Pieter B. Adv. Mater. , 1995 , 7 : 703 —710
[107] Veres J , Ogier S , Leeming S , et al . Proc. SPIE , 2003 , 5217 :147 —158
[108] Stassen A F , de Boer R W I , Iosad N N , et al . Appl . Phys.Lett . , 2004 , 85 : 3899 —3901
[109] Majewski L A , Schroeder R , Grell M, et al . J . Appl . Phys. ,2004 , 96 : 5781 —5787
[110] Yamashita J , Kurosawa T. J . Phys. Chem. Solids , 1958 , 5 :34 —43
[111] Holstein T. Ann. Phys. , 1959 , 8 : 343 —389
[112] Comber P G L , Spear E. Phys. Rev. Lett . , 1970 , 25 : 509 —511
[113] Scher H , Lax M. Phys. Rev. B , 1973 , 7 : 4502 —4519
[114] Vissenberg M, Matters M. Phys. Rev. B , 1998 , 57 : 12964 —12967
[115] Roichman Y. Research Thesis (Charge Transport in Conjugated Polymers) . Technion Israel Institute of Technology , 2004 , 52 —54
[116] Waragai K, Akimichi H , Hotta S , et al . Phys. Rev. B , 1995 ,52 : 1786 —1792
[117] Jurchescu O D , Baas J , Palstra T T M. Appl . Phys. Lett . ,2004 , 84 : 3061 —3063
[118] Sundar V C , Zaumseil J , Podzorov V , et al . Science , 2004 ,303 : 1644 —1646
[119] Podzorov V , Menard E , Borissov A , et al . Phys. Rev. Lett . ,2004 , 93 : art . no. 086602

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