Morphology and field-effect transistor characteristics of semicrystalline poly(3-hexylthiophene) and poly(stearyl acrylate) blend nanowires

被引:19
作者
Lin, Jung-Chuan [2 ]
Lee, Wen-Ya [2 ]
Wu, Hung-Chin [2 ]
Chou, Chih-Chieh [3 ]
Chiu, Yu-Cheng [2 ]
Sun, Ya-Sen [1 ]
Chen, Wen-Chang [2 ]
机构
[1] Natl Cent Univ, Dept Chem & Mat Engn, Tao Yuan 32001, Taiwan
[2] Natl Taiwan Univ, Dept Chem Engn, Taipei 10617, Taiwan
[3] Natl Taiwan Univ, Inst Polymer Sci & Engn, Taipei 10617, Taiwan
关键词
THIN-FILM TRANSISTORS; EFFECT MOBILITY; ELECTRICAL-PROPERTIES; CHARGE-TRANSPORT; PERFORMANCE; POLYTHIOPHENE; COPOLYMERS; NANOFIBERS; BLOCK;
D O I
10.1039/c2jm31362f
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The morphology and charge transport characteristics of semicrystalline poly(3-hexylthiophene) (P3HT) and semicrystalline poly(stearyl acrylate) (PSA) or amorphous poly(methyl methacrylate) (PMMA) with various blending ratios were systematically investigated using different solvents. The P3HT-PSA films prepared from CH2Cl2 formed well-defined P3HT nanowires with an average diameter of 30 nm, which was larger than that (similar to 14 nm) of the P3HT-PMMA films, as evidenced by TEM and AFM. The P3HT-PSA nanowire based field effect transistors (FET) could achieve a high hole mobility of 3.2 x 10(-3) cm(2) V-1 s(-1) using only 2 wt% P3HT composition. The maximum FET mobility of 7.86 x 10(-3) cm(2) V-1 s(-1) with the on/off ratio of 10(5) was obtained in the 10 wt% P3HT-PSA blends, which were higher than those of pristine P3HT and P3HT-PMMA devices. The semicrystalline PSA probably facilitated large P3HT crystallites and led to high FET mobility. Also, the P3HT-PSA FET devices showed lower percolation threshold and better ambient stability than the P3HT-PMMA devices. These results indicated that the crystalline non-conjugated polymers played a critical role in the charge transport and air stability of FETs based on conjugated polymer blends.
引用
收藏
页码:14682 / 14690
页数:9
相关论文
共 43 条
[1]   Morphology and field-effect mobility of charge carriers in binary blends of poly(3-hexylthiophene) with poly [2-methoxy-5-(2-ethylhexoxy)-1,4-phenylenevinylene] and polystyrene [J].
Babel, A ;
Jenekhe, SA .
MACROMOLECULES, 2004, 37 (26) :9835-9840
[2]   Effect of interchain interactions on the absorption and emission of poly(3-hexylthiophene) -: art. no. 064203 [J].
Brown, PJ ;
Thomas, DS ;
Köhler, A ;
Wilson, JS ;
Kim, JS ;
Ramsdale, CM ;
Sirringhaus, H ;
Friend, RH .
PHYSICAL REVIEW B, 2003, 67 (06)
[3]   Manipulation on the Morphology and Electrical Properties of Aligned Electrospun Nanofibers of Poly(3-hexylthiophene) for Field-Effect Transistor Applications [J].
Chen, Jung-Yao ;
Kuo, Chi-Ching ;
Lai, Chia-Sheng ;
Chen, Wen-Chang ;
Chen, Hsin-Lung .
MACROMOLECULES, 2011, 44 (08) :2883-2892
[4]   Morphologies of Self-Organizing Regioregular Conjugated Polymer/Fullerene Aggregates in Thin Film Solar Cells [J].
Chiu, Mao-Yuan ;
Jeng, U-Ser ;
Su, Ming-Shin ;
Wei, Kung-Hwa .
MACROMOLECULES, 2010, 43 (01) :428-432
[5]   Thermal annealing-induced enhancement of the field-effect mobility of regioregular poly(3-hexylthiophene) films [J].
Cho, Shinuk ;
Lee, Kwanghee ;
Yuen, Jonathan ;
Wang, Guangming ;
Moses, Daniel ;
Heeger, Alan J. ;
Surin, Mathieu ;
Lazzaroni, Roberto .
JOURNAL OF APPLIED PHYSICS, 2006, 100 (11)
[6]   Insight into the gelation habit of oligo(para-phenylene vinylene) derivatives: effect of end-groups [J].
Dasgupta, D. ;
Srinivasan, S. ;
Rochas, C. ;
Thierry, A. ;
Schroeder, A. ;
Ajayaghosh, A. ;
Guenet, J. M. .
SOFT MATTER, 2011, 7 (06) :2797-2804
[7]  
Dimitrakopoulos CD, 2002, ADV MATER, V14, P99, DOI 10.1002/1521-4095(20020116)14:2<99::AID-ADMA99>3.0.CO
[8]  
2-9
[9]   Multicomponent semiconducting polymer systems with low crystallization-induced percolation threshold [J].
Goffri, Shalom ;
Mueller, Christian ;
Stingelin-Stutzmann, Natalie ;
Breiby, Dag W. ;
Radano, Christopher P. ;
Andreasen, Jens W. ;
Thompson, Richard ;
Janssen, Rene A. J. ;
Nielsen, Martin M. ;
Smith, Paul ;
Sirringhaus, Henning .
NATURE MATERIALS, 2006, 5 (12) :950-956
[10]   Fabricating polythiophene into highly aligned microwire film by fast evaporation of its whisker solution [J].
He, Ming ;
Ge, Jing ;
Fang, Ming ;
Qiu, Feng ;
Yang, Yuliang .
POLYMER, 2010, 51 (10) :2236-2243