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Chiral cis-iron(ii) complexes with metal- and ligand-centered chirality for highly regio- and enantioselective alkylation of N-heteroaromatics

Iron-catalyzed highly regio- and enantioselective organic transformations with generality and broad substrate scope have profound applications in modern synthetic chemistry; an example is herein described based on cis-Fe(II) complexes having metal- and ligand-centered chirality. The cis-β Fe(II)(N(4...

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Detalles Bibliográficos
Autores principales: Wei, Jinhu, Cao, Bei, Tse, Chun-Wai, Chang, Xiao-Yong, Zhou, Cong-Ying, Che, Chi-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145867/
https://www.ncbi.nlm.nih.gov/pubmed/34123041
http://dx.doi.org/10.1039/c9sc04858h
Descripción
Sumario:Iron-catalyzed highly regio- and enantioselective organic transformations with generality and broad substrate scope have profound applications in modern synthetic chemistry; an example is herein described based on cis-Fe(II) complexes having metal- and ligand-centered chirality. The cis-β Fe(II)(N(4)) complex [Fe(II)(L)(OTf)(2)] (L = N,N′-bis(2,3-dihydro-1H-cyclopenta-[b]quinoline-5-yl)-N,N′-dimethylcyclohexane-1,2-diamine) is an effective chiral catalyst for highly regio- and enantioselective alkylation of N-heteroaromatics with α,β-unsaturated 2-acyl imidazoles, including asymmetric N1, C2, C3 alkylations of a broad range of indoles (34 examples) and alkylation of pyrroles and anilines (14 examples), all with high product yields (up to 98%), high enantioselectivity (up to >99% ee) and high regioselectivity. DFT calculations revealed that the “chiral-at-metal” cis-β configuration of the iron complex and a secondary π–π interaction are responsible for the high enantioselectivity.