Jk. Bera et al., AB-INITIO STUDY OF STRUCTURES, ENERGETICS, AND BONDING IN FORMALLY HIGH-OXIDATION-STATE COPPER ORGANOMETALLICS, Organometallics, 17(19), 1998, pp. 4136-4145
Geometry-optimized structures, energies, and harmonic vibrational freq
uencies of closed-shell states of CuL+, (XCuL)-L-I, and (XCuL)-L-III f
ragments (L = CO, C2H4, C2H2; X = H-, F-, OH-, O2-, N3-) have been obt
ained at the MP2 level using valence-DZP-quality basis sets with effec
tive core potentials. Natural population analyses have been used to in
terpret the nature of metal-ligand interactions. The computed data for
all the Cu(I) species are along expected lines. interestingly, the fo
rmally high-oxidation-state species also have effectively d(10) config
urations, with the electron deficiency localized in the ligands. As a
result, the Cu-X bonds are long and, in a few cases, the ligand L diss
ociates during geometry optimization. In the computed minima, the Cu-L
interaction energies are fairly large, primarily due to electrostatic
interactions. The extent of pi-back-donation is generally low in ''Cu
(III)'' systems. However, a strong pi-donor group enhances the ability
of the metal to engage in d pi-p pi bonding with CO, C2M4, or C2H2, m
aking it comparable to a typical (CuL)-L-I system in all respects. The
trends are virtually identical in all three lowest energy closed-shel
l states of the ethylene and acetylene complexes.