Fe-Catalyzed C–C Bond Construction from Olefins via Radicals

Julian C. Lo(Scripps Research Institute), Dongyoung Kim(Yale University), Chung‐Mao Pan(Scripps Research Institute), Jacob T. Edwards(Scripps Research Institute), Yuki Yabe(Scripps Research Institute), Jinghan Gui(Scripps Research Institute), Tian Qin(Scripps Research Institute), Sara Gutiérrez(Scripps Research Institute), Jessica Giacoboni(Scripps Research Institute), Myles W. Smith(Scripps Research Institute), Patrick L. Holland(Yale University), Phil S. Baran(Scripps Research Institute)
Journal of the American Chemical Society
January 17, 2017
Cited by 428Open Access
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Abstract

This Article details the development of the iron-catalyzed conversion of olefins to radicals and their subsequent use in the construction of C-C bonds. Optimization of a reductive diene cyclization led to the development of an intermolecular cross-coupling of electronically-differentiated donor and acceptor olefins. Although the substitution on the donor olefins was initially limited to alkyl and aryl groups, additional efforts culminated in the expansion of the scope of the substitution to various heteroatom-based functionalities, providing a unified olefin reactivity. A vinyl sulfone acceptor olefin was developed, which allowed for the efficient synthesis of sulfone adducts that could be used as branch points for further diversification. Moreover, this reactivity was extended into an olefin-based Minisci reaction to functionalize heterocyclic scaffolds. Finally, mechanistic studies resulted in a more thorough understanding of the reaction, giving rise to the development of a more efficient second-generation set of olefin cross-coupling conditions.


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