Large Modulation of Charge Carrier Mobility in Doped Nanoporous Organic Transistors

被引:58
|
作者
Zhang, Fengjiao [1 ]
Dai, Xiaojuan [2 ]
Zhu, Weikun [1 ]
Chung, Hyunjoong [1 ]
Diao, Ying [1 ]
机构
[1] Univ Illinois, Dept Chem & Biomol Engn, 600 S Mathews Ave, Urbana, IL 61801 USA
[2] Chinese Acad Sci, Inst Chem, Beijing Natl Lab Mol Sci, Beijing 100190, Peoples R China
关键词
doping; morphology; nanopores; organic field-effect transistors; solution coating; FIELD-EFFECT TRANSISTORS; THIN-FILM TRANSISTORS; CONVERT AMBIPOLAR; HIGH-PERFORMANCE; POLYMER; SEMICONDUCTORS; DOPANT; TRANSPORT; AIR; REDUCTION;
D O I
10.1002/adma.201700411
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Molecular doping of organic electronics has shown promise to sensitively modulate important device metrics. One critical challenge is the disruption of structure order upon doping of highly crystalline organic semiconductors, which significantly reduces the charge carrier mobility. This paper demonstrates a new method to achieve large modulation of charge carrier mobility via channel doping without disrupting the molecular ordering. Central to the method is the introduction of nanopores into the organic semiconductor thin films via a simple and robust templated meniscus-guided coating method. Using this method, the charge carrier mobility of C-8-benzothieno[3,2-b]benzothiophene transistors is boosted by almost sevenfold. This paper further demonstrates enhanced electron transport by close to an order of magnitude in a diketopyrrolopyrrole-based donor-acceptor polymer. Combining spectroscopic measurements, density functional theory calculations, and electrical characterizations, the doping mechanism is identified as partial-charge-transfer induced trap filling. The nanopores serve to enhance the dopant/organic semiconductor charge transfer reaction by exposing the p-electrons to the pore wall.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Covalent Organic Frameworks with High Charge Carrier Mobility
    Wan, Shun
    Gandara, Felipe
    Asano, Atsushi
    Furukawa, Hiroyasu
    Saeki, Akinori
    Dey, Sanjeev K.
    Liao, Lei
    Ambrogio, Michael W.
    Botros, Youssry Y.
    Duan, Xiangfeng
    Seki, Shu
    Stoddart, J. Fraser
    Yaghi, Omar M.
    CHEMISTRY OF MATERIALS, 2011, 23 (18) : 4094 - 4097
  • [22] Ultrahigh mobility and efficient charge injection in monolayer organic thin-film transistors on boron nitride
    He, Daowei
    Qiao, Jingsi
    Zhang, Linglong
    Wang, Junya
    Lan, Tu
    Qian, Jun
    Li, Yun
    Shi, Yi
    Chai, Yang
    Lan, Wei
    Ono, Luis K.
    Qi, Yabing
    Xu, Jian-Bin
    Ji, Wei
    Wang, Xinran
    SCIENCE ADVANCES, 2017, 3 (09):
  • [23] Overestimation of Carrier Mobility in Organic Thin Film Transistors Due to Unaccounted Fringe Currents
    Pei, Ke
    Chen, Ming
    Zhou, Zhiwen
    Li, Hanying
    Chan, Paddy Kwok Leung
    ACS APPLIED ELECTRONIC MATERIALS, 2019, 1 (03) : 379 - 388
  • [24] Impact of Charge Carrier Mobility and Electrode Selectivity on the Performance of Organic Solar Cells
    Spies, Annika
    Reinhardt, Jeneke
    List, Mathias
    Zimmermann, Birger
    Wuerfel, Uli
    ELEMENTARY PROCESSES IN ORGANIC PHOTOVOLTAICS, 2017, 272 : 401 - 418
  • [25] Organic thin films with charge-carrier mobility exceeding that of single crystals
    Lamport, Zachary A.
    Li, Ruipeng
    Wang, Chao
    Mitchell, William
    Sparrowe, David
    Smilgies, Detlef-M.
    Day, Cynthia
    Coropceanu, Veaceslav
    Jurchescu, Oana D.
    JOURNAL OF MATERIALS CHEMISTRY C, 2017, 5 (39) : 10313 - 10319
  • [26] Theoretical analysis of carrier mobility in organic field-effect transistors
    Xu, Yong
    Balestra, Francis
    Ghibaudo, Gerard
    APPLIED PHYSICS LETTERS, 2011, 98 (23)
  • [27] Effect of spatial inhomogeneity of charge carrier mobility on current-voltage characteristics in organic field-effect transistors
    Sworakowski, Juliusz
    Bielecka, Urszula
    Lutsyk, Petro
    Janus, Krzysztof
    THIN SOLID FILMS, 2014, 571 : 56 - 61
  • [28] Improving Charge Carrier Mobility of Polymer Blend Field Effect Transistors with Majority Insulating Polymer Phase
    Tan, Bin
    Pan, Hao
    Li, Heng
    Minus, Marilyn L.
    Budhlall, Bridgette M.
    Sobkowicz, Margaret J.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2018, 122 (05) : 2918 - 2930
  • [29] Charge carrier mobility in disordered organic blends
    Koster, L. Jan Anton
    ORGANIC PHOTONICS IV, 2010, 7722
  • [30] Effect of In Situ Annealing Treatment on the Mobility and Morphology of TIPS-Pentacene-Based Organic Field-Effect Transistors
    Yang, Fuqiang
    Wang, Xiaolin
    Fan, Huidong
    Tang, Ying
    Yang, Jianjun
    Yu, Junsheng
    NANOSCALE RESEARCH LETTERS, 2017, 12