Diaminophosphine Oxide Ligand Enabled Asymmetric Nickel-Catalyzed
Hydrocarbamoylations of Alkenes
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Abstract
Chiral
trivalent phosphorus species are the dominant class of ligands
and the key controlling element in asymmetric homogeneous transition-metal
catalysis. Here, novel chiral diaminophosphine oxide ligands are described.
The arising catalyst system with nickel(0) and trimethylaluminum efficiently
activates formamide C–H bonds under mild conditions providing
pyrrolidones via intramolecular hydrocarbamoylation in a highly enantioselective
manner with as little as 0.25% mol catalyst loading. Mechanistically,
the secondary phosphine oxides behave as bridging ligands for the
nickel center and the Lewis acidic organoaluminum center to give a
heterobimetallic catalyst with superior reactivity