Cobalt(III)‐Catalyzed Enantioselective Intermolecular Carboamination by C−H Functionalization

Kristers Ozols, Shunsuke Onodera, Łukasz Woźniak, Nicolai Cramer

Angewandte Chemie International Edition · 2020 · 135 citations · 58 references

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Abstract

High-valent cyclopentadienyl cobalt catalysis is a versatile tool for sustainable C-H bond functionalizations. To harness the full potential of this strategy, control of the stereoselectivity of these processes is necessary. Herein, we report highly enantioselective intermolecular carboaminations of alkenes through C-H activation of N-phenoxyamides catalyzed by Co<sup>III</sup> -complexes equipped with chiral cyclopentadienyl (Cp<sup>x</sup> ) ligands. The method converts widely available acrylates as well as bicyclic olefins into attractive enantioenriched isotyrosine derivatives as well as elaborated amino-substituted bicyclic scaffolds under very mild conditions. The outlined reactivity is unique to the Cp<sup>x</sup> Co<sup>III</sup> complexes and is complementary to the reactivity of 4d- and 5d- precious-metal catalysts.

References

58