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Achieving non-doped deep-blue OLEDs by applying bipolar imidazole derivatives.

Authors :
Jia, Yi
Wu, Sen
Zhang, Yuteng
Fan, Shigen
Zhao, Xiaoming
Liu, Hongli
Dong, Xiaofei
Wang, Shirong
Li, Xianggao
Source :
Organic Electronics. Jun2019, Vol. 69, p289-296. 8p.
Publication Year :
2019

Abstract

In this work, we designed and synthesized two novel bipolar deep-blue emitting materials, 2-(4'-(9 H -carbazol-9-yl)-[1,1′-biphenyl]-4-yl)-1 (4(tri-fluoromethyl) phenyl)-1 H -phenanthro[9,10- d ] imidazole (CzB-FMPPI) and 9-(4'-(4,5-diphenyl-1 (4-(trifluoromethyl) phenyl)-1 H -imidazole-2-yl)-[1,1′-biphenyl]-4-yl)-9 H -carbazole (CzB-FMPIM). Among them, carbazole and phenanthroimidazole are bridged linkage by the biphenyl ring and act as electron-donating part. The CF 3 -substituted phenyl ring applies as strong electron-withdrawing moiety. The exhibit highly twisted molecular configuration of two compounds efficiently shorten π-conjugation and inhibit intermolecular interaction, resulting in superior thermal stability and deep blue emission. High decomposition temperature of 431 °C and 414 °C, glass transition temperature of 150 °C and 135 °C for CzB-FMPPI and CzB-FMPIM, respectively, had been achieved. As a consequence of breaking the conjugation of phenanthroimidazole chromophore, CzB-FMPIM achieves an 8 nm blue-shifted emission compared with CzB-FMPPI. CzB-FMPPI exhibits a higher relative fluorescence quantum yield of 92.5% than 83.3% of CzB-FMPIM. Moreover, bipolar property was observed in both compound and homogeneous amorphous films were deposited and applied in the non-doped deep-blue OLEDs. The devices based on two emitters showed maximum luminance of 6667 cd/m2 and 3084 cd/m2, maximum EQE of 4.10% and 3.17%, respectively. Commission International de l'Éclairage (CIE) coordinates of CzB-FMPIM based device achieved (0.15, 0.07) which is extremely close to the NTSC standard blue CIE (0.14, 0.08). Image 1 Two donor-acceptor type deep blue fluorescent materials were firstly designed and synthesized. Compounds exhibit high fluorescence quantum yield, good thermal stability and bipolar properties. Non-doped good-performance deep-blue OLED devices with CIE of (0.15, 0.07) were achieved. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15661199
Volume :
69
Database :
Academic Search Index
Journal :
Organic Electronics
Publication Type :
Academic Journal
Accession number :
136089222
Full Text :
https://doi.org/10.1016/j.orgel.2019.03.044