Published April 2, 2025 | Published
Journal Article Open

Photoinduced, Copper-Catalyzed Enantioconvergent Synthesis of β-Aminoalcohol Derivatives

  • 1. ROR icon California Institute of Technology
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Abstract

In view of the frequent occurrence of carbon–nitrogen bonds in organic compounds, the development of powerful new methods for the construction of such bonds is expected to greatly impact many of the fields that utilize organic molecules. While the substitution of an alkyl electrophile by a nitrogen nucleophile is a seemingly straightforward approach to generating a carbon–nitrogen bond, in practice classical substitution pathways have very substantial limitations in the case of unactivated secondary and tertiary alkyl electrophiles. Recent reports that transition metals can catalyze certain substitution reactions of such electrophiles are therefore of considerable significance; however, virtually no methods have been developed wherein absolute stereochemistry is controlled together with carbon–nitrogen bond formation. Herein, we address this dual challenge of reactivity and enantioselectivity, describing a photoinduced, copper-catalyzed enantioconvergent synthesis of β-aminoalcohol derivatives via the coupling of anilines with racemic, unactivated β-haloethers. We apply this method to a catalytic asymmetric synthesis of metolachlor, and we report an array of mechanistic studies that are consistent with the reaction pathway that we propose.

Copyright and License

© 2025 American Chemical Society.

Acknowledgement

We thank the National Institutes of Health (National Institute of General Medical Sciences, R35-GM145315), the German Research Foundation (Deutsche Forschungsgemeinschaft (DFG); postdoctoral fellowship grant MO 4535/1 to A.M.), the Beckman Institute (support for the Center for Catalysis and Chemical Synthesis and for the Laser Resource Center), and the Dow Next-Generation Educator Fund (grant to Caltech) for funding. We also thank Dr. David G. Vander Velde (NMR Facility), Dr. Scott C. Virgil (Center for Catalysis and Chemical Synthesis), Dr. Jay R. Winkler (Beckman Institute Laser Resource Center), Dr. Caiyou Chen, Dr. Hyungdo Cho, Jiujiu (Rina) Wang, Dr. Jason P. G. Rygus, Zhuo-Yan Wang, and Dr. Feng Zhong for assistance and helpful discussions.

Supplemental Material

Experimental details: general information, preparation of electrophiles, preparation of nucleophiles, enantioconvergent C–N couplings, effect of reaction parameters, studies of functional-group compatibility, synthesis of (S)-metolachlor, assignment of absolute configuration, mechanistic studies, NMR spectra, SFC and HPLC data, and references (PDF)

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Additional details

Created:
April 3, 2025
Modified:
April 3, 2025