Issue 12, 2012

Phenylcarbazole-dipyridyl triazole hybrid as bipolar host material for phosphorescent OLEDs

Abstract

Two bipolar host materials p-cbtz and m-cbtz, with both phenylcarbazole and 3,5-bis(2-pyridyl)-1,2,4-triazole moieties, were synthesized and tested for fabrication of various phosphorescent OLEDs. The sp3-hybridized nitrogen atom of the 1,2,4-triazole fragment disrupted the π-conjugation between the electron donating 9-phenylcarbazole and the electron accepting 3,5-bis(2-pyridyl)-1,2,4-triazole and, thus, exhibited promising properties such as bipolar charge transport feature (10−5–10−6 cm2V−1s−1) and with relatively high triplet energy gaps (ET = 2.82–2.75 eV). As a result, they were utilized as universal hosts for various phosphorescent OLEDs, showing high efficiencies and low efficiency roll-off. For example, the devices hosted by m-cbtz achieve maximum external quantum efficiencies (ηext) of 8.8% for blue, 16.7% for green, 17.5% for yellow and 16.7% for red-emitting OLEDs. In addition, we also fabricated dual-emitter WOLEDs with a co-doped single emissive layer, exhibiting satisfactory device efficiencies (12.4%, 25 cd A−1, 17 lm W−1) and with highly stable chromaticity (CIEx = 0.26–0.27 and CIEy = 0.38) at an applied voltage of 8 to 11 V. These results demonstrated that the newly synthesized, phenylcarbazole-dipyridyl triazole host materials are advantageous for fabrication of various highly efficient phosphorescent OLEDs.

Graphical abstract: Phenylcarbazole-dipyridyl triazole hybrid as bipolar host material for phosphorescent OLEDs

Article information

Article type
Paper
Submitted
17 Nov 2011
Accepted
06 Jan 2012
First published
07 Feb 2012

J. Mater. Chem., 2012,22, 5410-5418

Phenylcarbazole-dipyridyl triazole hybrid as bipolar host material for phosphorescent OLEDs

W. Hung, G. Tu, S. Chen and Y. Chi, J. Mater. Chem., 2012, 22, 5410 DOI: 10.1039/C2JM15963E

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