TY - JOUR
T1 - Structure and bonding of the transition-metal carbonyl complexes M(CO)5L (M = Cr, Mo, W) and M(CO)3L (M = Ni, Pd, Pt; L = CO, SiO, CS, N2, NO+, CN- , NC-, HCCH, CCH2, CH2, CF2, H2)
AU - Ehlers, Andreas W.
AU - Dapprich, Stefan
AU - Vyboishchikov, Sergei F.
AU - Frenking, Gernot
PY - 1996/1/9
Y1 - 1996/1/9
N2 - Quantum mechanical ab initio calculations at the MP2 and CCSD(T) level of theory using effective core potentials (ECP) for the metals with a valence basis set of DZP quality and a 6-31GKd) all-electron basis set for the other elements are reported for the complexes M(CO)5L (M = Cr, Mo, W) and M(CO)3L (M = Ni, Pd, Pt) with ligands L = CO, SiO, CS, N2, NO+, CN-, NC-, HCCH, CCH2, CH2, CF2, and H2. The optimized geometries at MP2/II are in very good agreement with experiment. The theoretically predicted (CO)nM-L bond dissociation energies at CCSD(T)/II using MP2/II optimized geometries also agree quite well with experimental data. The (CO)nM-L bond is investigated using the charge decomposition analysis (CDA), which gives an interpretation of the donor-acceptor complexes in terms of charge donation, back-donation and repulsive polarization. The CDA results, which may be considered as a quantitative expression of the Dewar-Chatt-Duncanson model, are in agreement with the standard classification of the ligands.
AB - Quantum mechanical ab initio calculations at the MP2 and CCSD(T) level of theory using effective core potentials (ECP) for the metals with a valence basis set of DZP quality and a 6-31GKd) all-electron basis set for the other elements are reported for the complexes M(CO)5L (M = Cr, Mo, W) and M(CO)3L (M = Ni, Pd, Pt) with ligands L = CO, SiO, CS, N2, NO+, CN-, NC-, HCCH, CCH2, CH2, CF2, and H2. The optimized geometries at MP2/II are in very good agreement with experiment. The theoretically predicted (CO)nM-L bond dissociation energies at CCSD(T)/II using MP2/II optimized geometries also agree quite well with experimental data. The (CO)nM-L bond is investigated using the charge decomposition analysis (CDA), which gives an interpretation of the donor-acceptor complexes in terms of charge donation, back-donation and repulsive polarization. The CDA results, which may be considered as a quantitative expression of the Dewar-Chatt-Duncanson model, are in agreement with the standard classification of the ligands.
UR - http://www.scopus.com/inward/record.url?scp=0001053921&partnerID=8YFLogxK
U2 - 10.1021/om950697a
DO - 10.1021/om950697a
M3 - 文章
AN - SCOPUS:0001053921
SN - 0276-7333
VL - 15
SP - 105
EP - 117
JO - Organometallics
JF - Organometallics
IS - 1
ER -