4.8 Article

Highly Diastereoselective Functionalization of Piperidines by Photoredox-Catalyzed α-Amino C-H Arylation and Epimerization

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 142, Issue 18, Pages 8194-8202

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.9b13165

Keywords

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Funding

  1. NIH [R35GM122473, R01GM050422]
  2. NSF [CHE-1764328]
  3. NSF Graduate Research Fellowship
  4. National Science Foundation [OCI-1053575]

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We report a photoredox-catalyzed alpha-amino C-H arylation reaction of highly substituted piperidine derivatives with R electron-deficient cyano(hetero)arenes. The scope and limitations of the reaction were explored, with piperidines bearing multiple substitution patterns providing the arylated products in good yields and with high diastereoselectivity. To probe the mechanism of the overall transformation, optical and fluorescent spectroscopic methods were used to investigate the reaction. By employing flash-quench transient absorption spectroscopy, we were able to observe electron transfer processes associated with radical formation beyond the initial excited-state Ir(ppy)(3) oxidation. Following the rapid and unselective C-H arylation reaction, a slower epimerization occurs to provide the high diastereomer ratio observed for a majority of the products. Several stereoisomerically pure products were resubjected to the reaction conditions, each of which converged to the experimentally observed diastereomer ratios. The observed distribution of diastereomers corresponds to a thermodynamic ratio of isomers based upon their calculated relative energies using density functional theory (DFT).

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