Nature of the transition-metal-η2-H2 bond in TM(CO)3X22-H2) (TM = Cr, Mo, W; X = CO, PH3, PCl3, PMe3) complexes

Dénes S. Nemcsok, Attila Kovács, Victor M. Rayón, Gernot Frenking

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29 Scopus citations

Abstract

Quantum-chemical calculations at the gradient-corrected DFT level using BP86 of the structures and bond dissociation energies of the title compounds are reported. The nature of the metal-H2 bonding is quantitatively analyzed with an energy decomposition method. It is found that the metal-H2 bonds in TM(CO)5H2 are ∼47% covalent and ∼53% electrostatic. Two-thirds of the covalent interactions come from TM←σ(H2) σ donation, while one-third is due to TM→σ*(H2) π back-donation. Substitution of two CO ligands of the tungsten complex cis to H2 by PR3 (R = H, Cl, Me) leads to stronger W-H2 interactions. The electrostatic and covalent bonding both increase in the PR3-substituted species. Inspection of the covalent term shows that the W→σ*(H2) π back-donation becomes stronger when CO is substituted by PR3. The change of the ΔEπ values follows closely the change of the total interaction energy ΔEint. The changes in ΔEint upon rotating the H2 ligand in W(CO)3(PR3)2H2 also correlate quantitatively with the strength of the W→σ*(H2) π back-donation. Thus, the changes in the metal-H2 bonding situation which are invoked by different substituents and by rotation of the H2 ligand can be explained with the π contribution of the covalent bonding.

Original languageEnglish
Pages (from-to)5803-5809
Number of pages7
JournalOrganometallics
Volume21
Issue number26
DOIs
StatePublished - 23 Dec 2002
Externally publishedYes

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