THEORETICAL-STUDY OF THE 15-ELECTRON AND 17-ELECTRON STRUCTURES OF CYCLOPENTADIENYLCHROMIUM(III) AND CYCLOPENTADIENYLMOLYBDENUM(III) COMPLEXES - DICHLORIDE AND DIMETHYL COMPOUNDS

Citation
I. Cacelli et al., THEORETICAL-STUDY OF THE 15-ELECTRON AND 17-ELECTRON STRUCTURES OF CYCLOPENTADIENYLCHROMIUM(III) AND CYCLOPENTADIENYLMOLYBDENUM(III) COMPLEXES - DICHLORIDE AND DIMETHYL COMPOUNDS, The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory, 101(50), 1997, pp. 9801-9812
Citations number
56
ISSN journal
10895639
Volume
101
Issue
50
Year of publication
1997
Pages
9801 - 9812
Database
ISI
SICI code
1089-5639(1997)101:50<9801:TOT1A1>2.0.ZU;2-0
Abstract
The structure and the energetics of the model systems CpMX2(PH3) + PH3 reversible arrow CpMX2(PH3)(2) (Cp = cyclopentadienyl; M = Cr, Mo; X = Cl, CH3) are studied by performing Moller-Plesset second order (MP2) and density functional theory (DFT) calculations. Extended basis sets are employed in the geometry optimizations. The results indicate that the structural preference can be traced back to the competition betwe en electron pairing stabilization and M-P bond dissociation energy alo ng the spin doublet surface. At all levels of calculation, the energy splitting, a measure of the cost of pairing the electron during the pr omotion process from the quartet ground state to the excited doublet s tate for CpCrX2(PH3), is found to be on average 15-20 kcal/mol greater than the energy gain associated with the formation of the new Cr-PH3 bond along the spin doublet surface. For the analogous Mo chloride sys tem the reverse appears to be true, the products with higher coordinat ion being energetically favored by 10-12 kcal/mol. These data are in a greement with experimental evidence.