Bond-Weakening Catalysis: Conjugate Aminations Enabled by the Soft Homolysis of Strong N–H Bonds
Journal of the American Chemical Society2015Vol. 137(20), pp. 6440–6443
Citations Over TimeTop 10% of 2015 papers
Abstract
The ability of redox-active metal centers to weaken the bonds in associated ligands is well precedented, but has rarely been utilized as a mechanism of substrate activation in catalysis. Here we describe a catalytic bond-weakening protocol for conjugate amination wherein the strong N-H bonds in N-aryl amides (N-H bond dissociation free energies ∼100 kcal/mol) are destabilized by ∼33 kcal/mol upon by coordination to a reducing titanocene complex, enabling their abstraction by the weak H-atom acceptor TEMPO through a proton-coupled electron transfer process. Significantly, this soft homolysis mechanism provides a method to generate closed-shell, metalated nucleophiles under neutral conditions in the absence of a Brønsted base.
Related Papers
- → A dataset of highly accurate homolytic NBr bond dissociation energies obtained by Means of W2 theory(2015)35 cited
- → Hydroperoxysterols as a probe for the mechanism of cytochrome P-450scc-mediated hydroxylation. Homolytic versus heterolytic oxygen-oxygen bond scission.(1986)29 cited
- Improving the Accuracy of DFT Calculation for Homolysis Bond Dissociation Energies of Y—NO Bond via Back Propagation Neural Network Based on Mean Impact Value(2012)
- → Are Boryl Radicals from Amine–Boranes and Phosphine–Boranes the Most Stable Radicals?(2014)6 cited
- → Pressure effects as mechanistic probes for homolytic thermal cobaltcarbon bond cleavage of cobalamins(1992)9 cited