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Oxadiazole derivatives as bipolar host materials for high-performance blue and green phosphorescent organic light-emitting diodes.

作者信息

Wang Yanming, Duan Keke, Li Guoxiang, Yu Gewen

机构信息

School of Chemistry and Chemical Engineering, Inner Mongolia University of Science and Technology 7 Aldine Street Baotou 014010 Inner Mongolia PR China

School of Chemistry, Dalian University of Technology 2 Linggong Road Dalian 116024 PR China.

出版信息

RSC Adv. 2019 Oct 8;9(55):32010-32016. doi: 10.1039/c9ra07129f. eCollection 2019 Oct 7.

Abstract

By combining two n-type groups, pyridine and oxadiazole, with one p-type carbazole group, two novel bipolar hosts, namely 2-(3-(9-carbazol-9-yl)-[1,1'-biphenyl]-3-yl)-5-(pyridin-2-yl)-1,3,4-oxadiazole (PyOxd-mCz) and 2-(4'-(9-carbazol-9-yl)-[1,1'-biphenyl]-3-yl)-5-(pyridin-2-yl)-1,3,4-oxadiazole (PyOxd-pCz) have been developed as hosts for blue and green phosphorescent organic light-emitting diodes (PhOLEDs). The two compounds exhibit similar HOMO levels of -5.64 eV for PyOxd-mCz and -5.63 eV for PyOxd-pCz and the same LUMO level of -2.60 eV. With a more twisted configuration due to connections, PyOxd-mCz possesses a higher triplet energy level ( = 2.77 eV) and more balanced carrier transport than PyOxd-pCz ( = 2.60 eV). PyOxd-mCz hosted devices achieve a peak current efficiency of 39.7 cd A and a maximum EQE of 20.8% with a low turn-on voltage of 3.5 V for FIrpic and 55.2 cd A and 16.4% for Ir(ppy). Apart from the appropriate frontier molecular orbital levels and sufficiently high triplet energy of PyOxd-mCz, the more balanced carrier transport plays a key role for excellent device performance.

摘要
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31d8/9072674/9d118801f444/c9ra07129f-s1.jpg

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