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Synthesis, structure and electroluminescent properties of cyclometalated iridium complexes possessing sterically hindered ligands
Author(s) -
Marappan Velusamy,
K. R. Justin Thomas,
ChihHsin Chen,
Jiann T. Lin,
Yuh S. Wen,
WanTing Hsieh,
ChinHung Lai,
PiTai Chou
Publication year - 2007
Publication title -
dalton transactions
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.98
H-Index - 184
eISSN - 1477-9234
pISSN - 1477-9226
DOI - 10.1039/b618311e
Subject(s) - iridium , steric effects , electroluminescence , chemistry , combinatorial chemistry , stereochemistry , organic chemistry , catalysis , layer (electronics)
New CN donor ligands incorporating pyridine or benzoimidazole N donors and a sterically hindered cyclometalating aromatic core featuring a polyphenylenephenyl, fluoranthene, or triphenylene segment are prepared and successfully converted into heteroleptic iridium(III) cyclometalated complexes with acetylacetone auxiliary ligands. The X-ray structure of the complex, derived from a ligand containing a fluoranthene fragment, has been solved to unveil the corresponding structure. The results clearly demonstrate that the nature of the sigma-coordinating ligand segment plays a key role in dictating the emission profile and peak position, such that the emission hue has been successfully tuned ranging from green to red. Supplementary support of this viewpoint is also rendered by computational (DFT) approaches. Electroluminescent devices fabricated using a complex as dopant in the PVK matrix were found to exhibit bright greenish yellow emission with promising device characteristics (maximum brightness 26450 cd m(-2) at 30 V and a maximum current efficiency of 40 cd A(-1)).

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