Benzaldehyde, bromo-

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CAS: 52698-81-4
MF: C7H5OBr
MW: 185.018
Synonyms: Benzaldehyde, bromo-

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Yue Ma

Nankai University
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Qing-Lun Wang

Nankai University
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Evan Miller

University of California, Berkeley
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Dennis L. Wright

University of Connecticut
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Mindy Levine

University of Rhode Island
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Yu Liu

Jilin University
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Co-reporter: Kai Wang, Shipan Wang, Jinbei Wei, Yang Miao, Yu Liu, Yue Wang
pp: 3211-3220
Publication Date(Web):November 2014
DOI: 10.1016/j.orgel.2014.08.062
•Two novel bipolar host materials containing phenanthroimidazole and dimesitylborane are obtained.•High-performance green, yellow and red PhOLEDs based on two bipolar hosts have been demonstrated.•Very high and stable EL efficiencies are achieved.In this work, two novel bipolar host materials p-BPPI and m-BPPI containing phenanthroimidazole/dimesitylborane (Mes2B) with para- and meta-linkage have been designed, synthesized and characterized. The appending Mes2B moiety improves the thermal stability, electrochemical stability and carrier injection/transport ability of both target compounds. The test results of time-of-flight (TOF) and single-carrier devices show that both the new hosts possess bipolar charge-transporting characteristics. As a result, series of highly efficient green (66.3 cd A−1, 63.1 lm W−1, 18.2%), yellow (55.2 cd A−1, 66.6 lm W−1, 14.5%) and red (20.1 cd A−1, 20.4 lm W−1, 13.5%) PhOLEDs are achieved by using them as the universal host materials. The results indicate that bipolar host p-BPPI and m-BPPI have high potential in fabricating various color OLEDs for displays and lighting applications. Our study further enriches the selection of D and A group for phosphorescent host materials. The relationship between molecular structures and optoelectronic properties is discussed experimentally and theoretically.Two novel bipolar hosts containing phenanthroimidazole and dimesitylborane with para- and meta-linkage have been designed, synthesized and characterized. The appending Mes2B moiety improves the thermal stability, electrochemical stability and carrier injection/transport ability. Within these merit, we have fabricated highly efficient green (66.3 cd A−1, 63.1 lm W−1, 18.2%), yellow (55.2 cd A−1, 66.6 lm W−1, 14.5%) and red (20.1 cd A−1, 20.4 lm W−1, 13.5%) PhOLEDs by using these compounds as host materials. The results indicate that bipolar host p-BPPI and m-BPPI have high potential in fabricating various color OLEDs for displays and lighting applications.Image for unlabelled figure