Inorganic Chemistry, Vol.37, No.9, 2145-2149, 1998
Diastereoselective formation and photophysical behavior of a chiral copper(I) phenanthroline complex
The Friedlander condensation of (1R,5S)-(+)- and (1S,SR)-(-)-nopinone with 8-aminoquinoline-7-carbaldehyde leads to the corresponding enantiomerically pure (2,3-b)-pineno-1,10-phenanthrolines. Coordination of these ligands with Cu(I) affords non-interconvertable chiral complexes which show equal and opposite Cotton effects in their CD spectra as well as identical half-wave oxidation potentials of +0.37 V and identical MLCT absorptions at 442 nm. Both complexes are nonemissive at 298 and 77 K. Stern-Volmer quenching studies were carried out with optically pure Delta- and Lambda-[Ru(bpy)(3)](2+) and racemic [Ru(dpb)(3)](2+) as donors (bpy = 2,2'-bipyridine and dpb = 4,4'-diphenyl-bpy). Neither study provides any evidence of enantioselective quenching, indicating that energy or electron transfer may be occurring through a distance where chiral recognition is unimportant.
Keywords:HELICAL RUTHENIUM(II) COMPLEXES;CHARGE-TRANSFER ABSORPTION;METAL-ION COMPLEXES;CU(NN)2+ SYSTEMS;AQUEOUS-SOLUTION;LIGANDS;LUMINESCENCE;REDUCTION;STEREOSELECTIVITY;2;2'-BIPYRIDINE