Nickel-Catalyzed Negishi Arylations of Propargylic Bromides: A Mechanistic Investigation
Citations Over TimeTop 1% of 2014 papers
Abstract
Although nickel-catalyzed stereoconvergent couplings of racemic alkyl electrophiles are emerging as a powerful tool in organic chemistry, to date there have been no systematic mechanistic studies of such processes. Herein, we examine the pathway for enantioselective Negishi arylations of secondary propargylic bromides, and we provide evidence for an unanticipated radical chain pathway wherein oxidative addition of the C-Br bond occurs through a bimetallic mechanism. In particular, we have crystallographically characterized a diamagnetic arylnickel(II) complex, [(i-Pr-pybox)Ni(II)Ph]BAr(F)4, and furnished support for [(i-Pr-pybox)Ni(II)Ph](+) being the predominant nickel-containing species formed under the catalyzed conditions as well as a key player in the cross-coupling mechanism. On the other hand, our observations do not require a role for an organonickel(I) intermediate (e.g., (i-Pr-pybox)Ni(I)Ph), which has previously been suggested to be an intermediate in nickel-catalyzed cross-couplings, oxidatively adding alkyl electrophiles through a monometallic pathway.
Related Papers
- → Bimetallic Sites for Catalysis: From Binuclear Metal Sites to Bimetallic Nanoclusters and Nanoparticles(2023)549 cited
- → Recent Developments in Negishi Cross-Coupling Reactions(2016)396 cited
- → A new type of catalysts: catalysts of singly dispersed bimetallic sites(2023)12 cited
- → Synthesis of 5-Substituted 2,2′-Bipyridines from Substituted 2-Chloropyridines by a Modified Negishi Cross-Coupling Reaction(2002)64 cited
- → Experiences with Negishi Couplings on Technical Scale in Early Development(2003)10 cited