| Literature DB >> 28543913 |
Lara M Groves1, Christiane Schotten1, Joseph Beames1, James A Platts1, Simon J Coles2, Peter N Horton2, Duncan L Browne1, Simon J A Pope1.
Abstract
A first-generation machine-assisted approach towards the preparation of hybrid ligand/metal materials has been developed. A comparison of synthetic approaches demonstrates that incorporation of both flow chemistry and microwave heating can be successfully applied to the rapid synthesis of a range of new phenyl-1H-pyrazoles (ppz) substituted with electron-withdrawing groups (-F, -CF3 , -OCF3 , and -SF5 ). These, in turn, can be translated into heteroleptic complexes, [Ir(ppz)2 (bipy)]BF4 (bipy=2,2'-bipyridine). Microwave-assisted synthesis for the IrIII complexes allows isolation of spectroscopically pure species in less than 1 h of reaction time starting from IrCl3 . All of the new complexes have been characterised photophysically (including nanosecond time-resolved transient absorption spectroscopy), electrochemically, and by TD-DFT studies. The complexes exhibit ligand-dependent, tuneable, green-yellow luminescence (500-560 nm), with quantum yields in the range 5-15 %.Entities:
Keywords: iridium complexes; ligand syntheses; multistep continuous flow reactions; phosphorescent materials
Year: 2017 PMID: 28543913 DOI: 10.1002/chem.201701551
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236