Thermally Crosslinkable Hole-Transporting Poly(fluorene-co-triphenylamine) for Multilayer Polymer Light-Emitting Diodes

被引:19
作者
Su, Wen-Fen [2 ]
Chen, Ruei-Tang [1 ]
Chen, Yun [2 ]
机构
[1] Ind Technol Res Inst, Nanopower & Thin Film Technol Ctr, ITRI S, Tainan, Taiwan
[2] Natl Cheng Kung Univ, Dept Chem Engn, Tainan, Taiwan
关键词
crosslinking; hole injection; hole-transporting polymer; morphology; multilayer light-emitting diodes; synthesis; thermally crosslinkable polymer; ORGANIC ELECTROLUMINESCENT DIODES; CONJUGATED POLYMERS; POLY(P-PHENYLENE VINYLENE); 2-PHOTON ABSORPTION; CONDUCTING POLYMER; HIGH-EFFICIENCY; DEVICES; TRIPHENYLAMINE; POLYFLUORENE; ARYLAMINE;
D O I
10.1002/pola.24432
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This article reports the synthesis and characterization of a novel thermally crosslinkable hole-transporting poly (fluorene-co-triphenylamine) (PFO-TPA) by Suzuki coupling reaction, followed with its application in the fabrication of multilayer light-emitting diodes by wet processes. The thermal, photophysical, and electrochemical properties of PFO-TPA were investigated by differential scanning calorimeter, thermogravimetric analysis, optical spectroscopy, and cyclic voltammetry, respectively. Thermally crosslinked PFO-TPA, through pendant styryl groups, demonstrates excellent thermal stability (T-d > 400 degrees C, T-g = 152 degrees C), solvent resistance, and film homogeneity. Its highest occupied molecular orbital level (-5.30 eV) lies between those of PEDOT:PSS (-5.0 similar to -5.2 eV) and poly(9,9-dioctylfluorene) (PFO: -5.70 eV), forming a stepwise energy ladder to facilitate hole injection. Multi layer device with crosslinked PFO-TPA as hole-injection layer (HIL) (ITO/PEDOT:PSS/HIUPFO/LiF/Ca/Al) was readily fabricated by successive spin-coating processes, its maximum luminance efficiency (3.16 cd/A) were about six times higher than those without PFO-TPA layer (0.50 cd/A). The result of hole-only device also confirmed hole-injection and hole-transport abilities of crosslinked PFO-TPA layer. Consequently, the device performance enhancement is attributed to more balanced charges injection in the presence of crosslinked PFO-TPA layer. The thermally crosslinkable PFO-TPA is a promising material for the fabrication of efficient multilayer polymer light-emitting diodes because it is not only a hole-transporting polymer but also thermally crosslinkable. (C) 2010 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 49: 352-360, 2011
引用
收藏
页码:352 / 360
页数:9
相关论文
共 50 条
  • [41] Highly Efficient Blue Fluorescent Organic Light-Emitting Diodes by Engineering Hole-Transporting/Exciton-Blocking Layer
    Kwak, Jeonghun
    Chae, Jangwoo
    Son, Sunghyun
    Jung, Byung Jun
    ECS SOLID STATE LETTERS, 2015, 4 (02) : R5 - R9
  • [42] Comparison of Optical and Electrical Properties of Different Hole-Transporting Materials for Solution-Processable Organic Light-Emitting Diodes
    Park, Woongbae
    Yoon, Sung Cheol
    Lee, Jaemin
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2019, 19 (08) : 4578 - 4582
  • [43] Undoped, red organic light-emitting diodes based on a N,N,N′,N′-tetraphenylbenzidine (TPD) derivative as red emitter with a triphenylamine derivative as hole-transporting layer
    Cao, Xingbo
    Wen, Yugeng
    Guo, Yunlong
    Yu, Gui
    Liu, Yunqi
    Yang, Lian-Ming
    DYES AND PIGMENTS, 2010, 84 (02) : 203 - 207
  • [44] Homoleptic iridium complexes with dibenzothiophene sulfone and triphenylamine groups for orange polymer light-emitting diodes
    Xu, Jiarong
    Wang, Zhiping
    Huang, Yaoyao
    Hu, Sifan
    Zhou, Wenjing
    Liu, Jian
    Liang, Aihui
    Cai, Mingzhong
    OPTICAL MATERIALS, 2021, 115
  • [45] Novel 9,9′-(1,3-Phenylene)bis-9H-carbazole-Containing Copolymers as Hole-Transporting and Host Materials for Blue Phosphorescent Polymer Light-Emitting Diodes
    Yoon, Seung Hee
    Shin, Jicheol
    Um, Hyun Ah
    Lee, Tae Wan
    Cho, Min Ju
    Kim, Yong Jae
    Son, Young Hoon
    Yang, Joong Hwan
    Chae, Geesung
    Kwon, Jang Hyuk
    Choi, Dong Hoon
    JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2014, 52 (05) : 707 - 718
  • [46] Spiro-based hole-transporting materials utilized in green perovskite quantum dot light-emitting diodes with high luminance
    Huang, Zetian
    Li, Xiansheng
    Li, Guohong
    Zhang, Daqing
    Zhang, Qin
    Luo, Xin
    Zhou, Haitao
    Xu, Bo
    Huang, Jinhai
    Su, Jianhua
    NEW JOURNAL OF CHEMISTRY, 2023, 47 (36) : 16927 - 16934
  • [47] Influence of the thickness of electrochemically deposited polyaniline used as hole transporting layer on the behaviour of polymer light-emitting diodes
    Alonso, J. L.
    Ferrer, J. C.
    Cotarelo, M. A.
    Montilla, F.
    de Avila, S. Fernandez
    THIN SOLID FILMS, 2009, 517 (08) : 2729 - 2735
  • [48] Improved Electroluminescence Performance of Perovskite Light-Emitting Diodes by a New Hole Transporting Polymer Based on the Benzocarbazole Moiety
    Kang, Seokwoo
    Jillella, Raveendra
    Jeong, Jinwook
    Park, Young-Il
    Pu, Yong-Jin
    Park, Jongwook
    ACS APPLIED MATERIALS & INTERFACES, 2020, 12 (46) : 51756 - 51765
  • [49] A thermally cross-linkable hole-transporting small-molecule for efficient solution-processed organic light emitting diodes
    Dubey, Deepak Kumar
    Swayamprabha, Sujith Sudheendran
    Yadav, Rohit Ashok Kumar
    Tavgeniene, Daiva
    Volyniuk, Dmytro
    Grigalevicius, Saulius
    Jou, Jwo-Huei
    ORGANIC ELECTRONICS, 2019, 73 : 94 - 101
  • [50] High-efficiency quantum dot light-emitting diodes employing lithium salt doped poly-(9-vinlycarbazole)as a hole-transporting layer
    Shi, Ying-Li
    Liang, Feng
    Hu, Yun
    Wang, Xue-Dong
    Wang, Zhao-Kui
    Liao, Liang-Sheng
    JOURNAL OF MATERIALS CHEMISTRY C, 2017, 5 (22) : 5372 - 5377