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The double dendron approach to host free phosphorescent poly(dendrimer) OLEDs

The addition of dendrons to iridium( iii ) complexes attached to a poly(styrene) backbone is shown to improve the physical and optoelectronic properties of the phosphorescent materials. The iridium( iii ) complexes have two 2-phenylpyridyl ligands and one phenyltriazolyl ligand, with the latter prov...

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Bibliographic Details
Published in:Polymer chemistry 2012-01, Vol.3 (3), p.734-74
Main Authors: Lai, Wen-Yong, Levell, Jack W, Balfour, Michael N, Burn, Paul L, Lo, Shih-Chun, Samuel, Ifor D. W
Format: Article
Language:English
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Summary:The addition of dendrons to iridium( iii ) complexes attached to a poly(styrene) backbone is shown to improve the physical and optoelectronic properties of the phosphorescent materials. The iridium( iii ) complexes have two 2-phenylpyridyl ligands and one phenyltriazolyl ligand, with the latter providing the attachment point to the polymer backbone. It was found that by increasing the number of dendrons (from zero to two) per 2-phenylpyridyl ligand, the intra- and interchain interactions could be more effectively controlled. The poly(dendrimer) with two dendrons per ligand had solution and solid-state photoluminescence quantum yields of 67% and 47%, respectively. Organic light-emitting diodes containing the doubly dendronised (two dendrons per ligand) poly(dendrimer) had a low turn on voltage of 3.6 V (>1.0 cd m 2 ), a maximum luminance of 6700 cd m 2 (at 12.2 V), and 100 cd m 2 was achieved at 6.0 V with an external quantum efficiency (EQE) of 9.2% (28.1 cd A 1 ) and power efficiency of 14.7 lm/W. A solution of the doubly dendronised poly(dendrimer) in N -methyl-2-pyrolidinone was found to have a viscosity of 4.6 mPa s, which falls in the range of solutions that can be inkjet printed. We report the synthesis and characterisation of a doubly dendronised light-emitting poly(dendrimer) and investigate its performance in organic light-emitting diodes.
ISSN:1759-9954
1759-9962
DOI:10.1039/c2py00519k