articleScienceMay 2, 2013GREEN OA

Complex N-Heterocycle Synthesis via Iron-Catalyzed, Direct C–H Bond Amination

Harvard University

PubMed
Indexed incrossrefpubmed

Abstract

The manipulation of traditionally unreactive functional groups is of paramount importance in modern chemical synthesis. We have developed an iron-dipyrrinato catalyst that leverages the reactivity of iron-borne metal-ligand multiple bonds to promote the direct amination of aliphatic C-H bonds. Exposure of organic azides to the iron dipyrrinato catalyst furnishes saturated, cyclic amine products (N-heterocycles) bearing complex core-substitution patterns. This study highlights the development of C-H bond functionalization chemistry for the formation of saturated, cyclic amine products and should find broad application in the context of both pharmaceuticals and natural product synthesis.

Citation impact

597
total citations
FWCI
27.96
Percentile
100%
References
51
Citations per year

Authors

2

Topics & keywords

Keywords
  • Amination
  • Chemistry
  • Catalysis
  • Reactivity (psychology)
  • Ligand (biochemistry)
  • Amine gas treating
  • Context (archaeology)
  • Organic synthesis
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