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Solution-processable and thermal-stable triphenylamine-based dendrimers with truxene cores as hole-transporting materials for organic light-emitting devices
作者: Yang ZF (Yang, Zhongfeng)1, Xu B (Xu, Bin)1, He JT (He, Jiating)1, Xue LL (Xue, Lili)1, Guo Q (Guo, Qing)1, Xia HJ (Xia, Haijian)1, Tian WJ (Tian, Wenjing)1
来源出版物: ORGANIC ELECTRONICS    卷: 10    期: 5    页: 954-959    出版年: AUG 2009

摘要: Two solution processable pi-conjugated triphenylamine-based dendrimers, Tr-TPA3 and Tr-TPA9 were served as hole-transporting materials (HTMs) for organic light-emitting devices (OLEDs), The two dendrimers exhibit similar absorption and emission behaviors in solutions and thin films, which demonstrate that these dendrimers can form amorphous states in their films. The dendrimers showed excellent solubility, which are soluble in common organic solvents such as chloroform, tetrahydrofuran, and 1,1,2,2-tetrachloroethane, high thermal stability with high glass-transition temperature (T-g) of 115 degrees C for Tr-TPA3 and 140 degrees C for Tr-TPA9, high the highest unoccupied molecular orbital (HOMO) energy level (-5.12 eV for Tr-TPA3 and -4.95 eV for Tr-TPA9, respectively) and good film forming property. When we employed these dendrimers as hole transport layer (HTL) in tris-(8-hydroxyquinoline) aluminum (Alq(3))-emitting electroluminescence (EL) devices, the Tr-TPA9-based double-layer device exhibited the turn-on voltage of 2.5 V, the maximum luminance of about 11,058 cd m(-2) and the maximum current efficiency of 4.01 cd A(-1). The comparison of the properties between the EL devices with dendrimers as HTL and the EL device with 1,4-bis(1-naphthylphenylamino)biphenyl (NPB) as HTL indicated that this series of dendrimers can be good candidates for HTM in OLEDs.