Title of article :
A theoretical study of the electronic effect of the ligand bite angle on the hydrosilylation reaction of ketones by Cu(I) diphosphine complexes
Author/Authors :
Thomas Gathy، نويسنده , , Olivier Riant، نويسنده , , Daniel Peeters، نويسنده , , Tom Leyssens، نويسنده ,
Issue Information :
دوفصلنامه با شماره پیاپی سال 2011
Pages :
6
From page :
3425
To page :
3430
Abstract :
Diphosphine ligands are commonly used for the catalytic hydrosilylation of ketones using Cu(I) complexes. The electronic effect of the P–Cu–P bite angle has been investigated by a theoretical DFT study. An increase of the P–Cu–P bite angle induces a stronger phosphorus lone pair/Cu-H σ∗ orbital interaction due to a better overlap between these orbitals. This increase in overlap affects structural and electronic properties of the copper hydride catalyst. Increasing the bite angle leads to a decrease of the Cu-P distances and an increases of the Cu-H distances. From an electronic point of view, the effect of an increasing bite angle leads to a weakening of the σ Cu-H orbital, and an increase of the hydride population. The increased polarization of the hydride leads to an easier electron transfer from the σ Cu-H bond to the carbon of the ketone.
Keywords :
Reactivity , Diphosphine , Cu(I) , Bite angle , DFT , Hydrosilylation , Catalysis
Journal title :
Journal of Organometallic Chemistry
Serial Year :
2011
Journal title :
Journal of Organometallic Chemistry
Record number :
1373249
Link To Document :
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