Issue 48, 2016

Computational design of high efficiency nonplanar tri-s-triazine-based ambipolar host materials for phosphorescent blue emitters

Abstract

A series of nonplanar tri-s-triazine-based molecules were designed, and their optical, electronic, and charge transport properties as ambipolar host materials for blue electrophosphorescence emitters were explored by density functional theory. The influence of the linkage between tri-s-triazine and carbazole, diphenylamine and triphenylamine, as well as the influence of a series of electron-donating and electron-withdrawing substituents on triplet energy, energy level matching and charge transport of the designed molecules was discussed in detail. Our results reveal that the molecules under investigation can serve as host materials for blue electrophosphorescence emitters. We also predicted the mobility of designed molecules with better performance in the P[1 with combining macron] space group. Based on the investigated results, we proposed a rational way for the design of host materials for OLEDs, and also expanded the application field of tri-s-triazine.

Graphical abstract: Computational design of high efficiency nonplanar tri-s-triazine-based ambipolar host materials for phosphorescent blue emitters

Supplementary files

Article information

Article type
Paper
Submitted
09 Sep 2016
Accepted
10 Nov 2016
First published
10 Nov 2016

Phys. Chem. Chem. Phys., 2016,18, 33009-33020

Computational design of high efficiency nonplanar tri-s-triazine-based ambipolar host materials for phosphorescent blue emitters

Z. Nie, Z. Mai, Y. Peng, K. Chen, Y. Zhang and W. Zheng, Phys. Chem. Chem. Phys., 2016, 18, 33009 DOI: 10.1039/C6CP06230J

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