화학공학소재연구정보센터
Inorganic Chemistry, Vol.34, No.23, 5910-5918, 1995
Copper(II) and Copper(I) Complexes Stabilized by Phosphine Oxides - Synthesis and Characterization of the Cationic Complexes (Cu(Odppf)(2)(Etoh))(2+) and (Cu(Odppf)(2))(2+), Precursors of the Novel Copper(I) Adduct (Cu(Odppf)(2))(+) (Odppf=1,1’-bis(Oxodiphenylphosphoranyl)Ferrocene) - Crystal-Structure of (Cu(Odppf)(2)(Etoh))(BF4)(2) and (Cu(Odppf)(2))(BF4)(2)
The ferrocenylbis(phosphine) dioxide complexes [Cu(odppf)(2)(EtOH)](BF4)(2) (1) and [Cu(odppf)(2)](BF4)(2) (2) (odppf = 1,1’-bis(oxodiphenylphosphoranyl)ferrocene have been prepared and characterized in the solid state by X-ray analysis and in solution by a combination of ESR, visible, and LR-spectroscopies and electrochemical techniques. The complexes crystallize in the monoclinic system, space group P2(1)/c, with Z = 4, and a = 19.484(2) and 12.325(2) Angstrom, b = 13.450(2) and 33.137(3) Angstrom, c = 25.477(2) and 17.608(2) Angstrom, and beta = 93.9(1) and 108.7(2)degrees, far complexes 1 and 2, respectively. In the cations the four O atoms of two odppf ligands are directly bonded to the metal center with Cu-O distances ranging from 1.92 to 2.076 Angstrom. In complex 1 the metal is pentacoordinate with the five donor atoms at the vertices of a distorted trigonal bipyramid formed by two chelated odppf moyeties and one molecule of ethanol, occupying an equatorial position, as the fifth ligand. In complex 2 the coordination geometry around the metal atom is distorted square-planar with the two odppf moieties acting as chelating ligands with a bite angle of about 153 degrees.