Inorganic Chemistry, Vol.43, No.24, 7709-7725, 2004
Homoleptic cobalt and copper phenolate A(2)[M(OAr)(4)] compounds: The effect of phenoxide fluorination
Two series of homoleptic phenolate complexes with fluorinated aryloxide ligands A(2)[M(OAr)(4)] with M = Co2+ or Cu2+, OAr- = (OC6F5)(-) (OArF) or {3,5-OC6H3(CF3)1}(-) (OAr'), A(+) = K (18-crown-6)(+), Tl+, Ph4P+, Et3HN+, or Me4N+ have been synthesized. Two related complexes with nonfluorinated phenoxide ligands have been synthesized and studied in comparison to the fluorinated aryloxides demonstrating the dramatic structural changes effected by modification of OPh to OArF. The compounds {K(18-crown-6)}(2)[Cu(Or(F))(4)], 1a; {K(18-crown-6)}(2)[Cu(OAr')(4)], 1b; [Tl2Cu(OArF)(4)], 2a; [Tl2Cu(OAr')(4)], 2b; (Ph4P)(2)[Cu(OArF)(4)], 3; ((Bu4N)-Bu-n)(2)[Cu(OArF)(4)], 4; (HEt3N)(2)[Cu(OArF)(4)], 5; {K(18-crown-6)}(2)[Cu-2(mu(2)-OC6H5)(2)(OC6H5)(4)], 6; {K(18-crown-6)}(2)[Co(OArF)(4)], 7a; {K(18-crown-6)}(2)[Co(OAr')(4)], 7b; [Tl2Co(OArF)(4)], 8a; [Tl2Co(OAr')(4)], 8b; (Me4N)(2)[Co(OArF)(4)], 9; [Cp2Co](2)[Co(OAr')(4)], 10; and {K(18-crown-6)}(2)[Co-2(mu(2)-OC6H5)(2)(OC6H5)(4)], 11, have been characterized with UV-vis and multinuclear NMR spectroscopy and solution magnetic moment studies. Cyclic voltammetry was used to study la, 1b, 7a, and 7b. X-ray crystallography was used to characterize 1b, 3, 4, 5, 6, 7a, 7b, 10, and 11. The related [MX4](2-) compound (Ph4P)(2)[Co(OArF)(2)Cl-2], 12, has also been synthesized and characterized spectroscopically, as well as with conductivity and single-crystal X-ray diffraction. Use of fluorinated aryloxides permits synthesis and isolation of the mononuclear, homoleptic phenolate anions in good yield without oligomerized side products. The reaction conditions that result in homoleptic la and 7a with OAr F upon changing the ligand to OPh result in mu(2)-OPh bridging phenoxides and the dimeric complexes 6 and 11. The [M(OArF)(4)](2-) and [M(OAr')(4)](2-) anions in la, 1b, 3, 4, 5, 7a, 7b, 9, and 10 demonstrate that stable, isolable homoleptic phenolate anions do not need to be coordinatively or sterically saturated and can be achieved by increasing the electronegativity of the ligand.