TY - JOUR
T1 - Bonding situation in "early-late" transition metal complexes Cl3M-M′(PCl3)4 (M = Ti, Zr, Hf; M′ = Co, Rh, Ir) - Theoretical study for a ligand fine tuning of M-M′ bonds
AU - Takagi, Nozomi
AU - Krapp, Andreas
AU - Frenking, Gernot
PY - 2011/10
Y1 - 2011/10
N2 - Density functional theory calculations using the BP86 functional in combination with triple-ζ quality basis sets have been carried out for the "early-late" transition metal complexes Cl3M- M′(PCl3)4 (M = Ti, Zr, Hf; M′ = Co, Rh, Ir) and the derivatives R3M-M′L4 (R = Cl, NH 2; L = PCl3, PH3, CO). The calculations demonstrate that the metal-metal bond strength in R3M-M′L 4 can be strongly influenced by the nature of the ligands R and L. The intrinsic interaction energy ΔEint and the bond dissociation energy of the M-M′ bonds in Cl3M-M′(PCl 3)4 are much smaller than in the previously investigated species (H2N)3M-M′(CO)4. The M-M′ bonds become stronger in both sets of compounds when the metal atoms become heavier. The equilibrium geometries of Cl3M-M′(PCl 3)4 which have bipyramidal structures have C3 symmetry. The M-Co bonds in Cl3Zr-Co(PCl3)4 and Cl3Hf-Co(PCl3)4 and to a lesser degree in Cl3Ti-Co(PCl3)4 are unusually long because of direct interactions between the equatorial PCl3 groups and the group 4 atoms Zr, Hf. The analysis of the metal-metal interactions suggests that Cl3M-M′(PCl3)4 has M-M′ single bonds.
AB - Density functional theory calculations using the BP86 functional in combination with triple-ζ quality basis sets have been carried out for the "early-late" transition metal complexes Cl3M- M′(PCl3)4 (M = Ti, Zr, Hf; M′ = Co, Rh, Ir) and the derivatives R3M-M′L4 (R = Cl, NH 2; L = PCl3, PH3, CO). The calculations demonstrate that the metal-metal bond strength in R3M-M′L 4 can be strongly influenced by the nature of the ligands R and L. The intrinsic interaction energy ΔEint and the bond dissociation energy of the M-M′ bonds in Cl3M-M′(PCl 3)4 are much smaller than in the previously investigated species (H2N)3M-M′(CO)4. The M-M′ bonds become stronger in both sets of compounds when the metal atoms become heavier. The equilibrium geometries of Cl3M-M′(PCl 3)4 which have bipyramidal structures have C3 symmetry. The M-Co bonds in Cl3Zr-Co(PCl3)4 and Cl3Hf-Co(PCl3)4 and to a lesser degree in Cl3Ti-Co(PCl3)4 are unusually long because of direct interactions between the equatorial PCl3 groups and the group 4 atoms Zr, Hf. The analysis of the metal-metal interactions suggests that Cl3M-M′(PCl3)4 has M-M′ single bonds.
KW - Bonding analysis
KW - Density funcitional calculations
KW - Heterodimetallic compounds
KW - Metal-metal bonds
KW - Transition metal complexes
UR - http://www.scopus.com/inward/record.url?scp=80055022656&partnerID=8YFLogxK
U2 - 10.1002/zaac.201100198
DO - 10.1002/zaac.201100198
M3 - 文章
AN - SCOPUS:80055022656
SN - 0044-2313
VL - 637
SP - 1728
EP - 1735
JO - Zeitschrift fur Anorganische und Allgemeine Chemie
JF - Zeitschrift fur Anorganische und Allgemeine Chemie
IS - 12
ER -