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Emissive Pt(ii) complexes bearing both cyclometalated ligand and 2-pyridyl hexafluoropropoxide ancillary chelate
Author(s) -
ShengYuan Chang,
YiMing Cheng,
Yün Chi,
YiChih Lin,
ChangMing Jiang,
GeneHsiang Lee,
PiTai Chou
Publication year - 2008
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/b808602h
Subject(s) - chelation , bearing (navigation) , ligand (biochemistry) , chemistry , medicinal chemistry , stereochemistry , combinatorial chemistry , inorganic chemistry , computer science , receptor , biochemistry , artificial intelligence
A new series of mono-cyclometalated Pt(II) complexes 1-4 with chelating 2-pyridyl hexafluoropropoxide as the ancillary ligand were synthesized. Single crystal X-ray diffraction studies were examined, giving evidence for the occurrence of pi pi stacking between the cyclometalated ligands, but a lack of intermolecular Pt ... Pt interaction. Among these complexes, the benzo[h]quinoline analogue 2a shows the greatest degree of pi pi stacking, which is also confirmed by the observation of additional, large Stokes shifted emission attributed to the aggregated counterparts in solid thin film. All these Pt(II) complexes are highly emissive in solid state, whereas except for 4-phenylquinazoline analogues 4a and 4b, complexes 1-3 in solution are subject to dominant radiationless deactivation induced, in part, by the solvent collision to the square planar Pt(II) framework. Electroluminescent OLEDs employing 2-phenylpyridine analogue 1b as the dopants were fabricated, rendering satisfactory performance data suited for future improvement.

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