Journal of the American Chemical Society, Vol.135, No.45, 17004-17018, 2013
Activation of Nitriles by Metal Ligand Cooperation. Reversible Formation of Ketimido- and Enamido-Rhenium PNP Pincer Complexes and Relevance to Catalytic Design
The dearomatized complex cis-[Re(PNPtBu*)(CO)(2)] (4) undergoes cooperative activation of C N triple bonds of nitriles via [1,3]-addition. Reversible C C and Re N bond formation in 4 was investigated in a combined experimental and computational study. The reversible formation of the ketimido complexes (5-7) was observed. When nitriles bearing an alpha methylene group are used, reversible formation of the enamido complexes (8 and 9) takes place. The reversibility of the activation of the nitriles in the resulting ketimido compounds was demonstrated by the displacement of p-CF3-benzonitrile from cis-[Re(PNPtBu-N=CPhpCF3)(CO)(2)] (6) upon addition of an excess of benzonitrile and by the temperature-dependent [1,3]-addition of pivalonitrile to complex 4. The reversible binding of the nitrile in the enamido compound cis-[Re(PNPtBu-HNC=CHPh)(CO)(2)] (9) was demonstrated via the displacement of benzyl cyanide from 9 by CO. Computational studies suggest a stepwise activation of the nitriles by 4, with remarkably low activation barriers, involving precoordination of the nitrile group to the Re(I) center. The enamido complex 9 reacts via beta-carbon methylation to give the primary imino complex cis-[Re(PNPtBu-HN=CC(Me)Ph)(CO)(2)]OTf 11. Upon deprotonation of 11 and subsequent addition of benzyl cyanide, complex 9 is regenerated and the monomethylation product 2-phenylpropanenitrile is released. Complexes 4 and 9 were found to catalyze the Michael addition of benzyl cyanide derivatives to alpha,beta-unsaturated esters and carbonyls.