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DOI: 10.1055/s-0040-1706413
Chiral Brønsted Acids Catalyze Asymmetric Additions to Substrates that Are Already Protonated: Highly Enantioselective Disulfonimide-Catalyzed Hantzsch Ester Reductions of NH–Imine Hydrochloride Salts
Generous support from the Max-Planck-Gesellschaft, the Deutsche Forschungsgemeinschaft (Leibniz Award to B.L. and Cluster of Excellence RESOLV, Grant No. EXC 1069), and the European Research Council (Advanced Grant ‘C–H Acids for Organic Synthesis, CHAOS’) are gratefully acknowledged. C.O. also acknowledges Alexander von Humboldt Foundation and Bayer Science & Education Foundation for the Humboldt-Bayer Fellowship for Postdoctoral Researchers.
Publication History
Received: 19 June 2020
Accepted after revision: 13 July 2020
Publication Date:
14 August 2020 (online)


Abstract
While imines are frequently used substrates in asymmetric Brønsted acid catalysis, their corresponding salts are generally considered unsuitable reaction partners. Such processes are challenging because they require the successful competition of a catalytic amount of a chiral anion with a stoichiometric amount of an achiral one. We now show that enantiopure disulfonimides enable the asymmetric reduction of N–H imine hydrochloride salts using Hantzsch esters as hydrogen source. Our scalable reaction delivers crystalline primary amine salts in great efficiency and enantioselectivity and the discovery suggests potential of this approach in other Brønsted acid catalyzed transformations of achiral iminium salts. Kinetic studies and acidity data suggest a bifunctional catalytic activation mode.
Key words
Brønsted acids - N–H imine hydrochloride salt - primary amine - disulfonimide (DSI) - organocatalytic reductionSupporting Information
- Supporting information for this article is available online at https://doi.org/10.1055/s-0040-1706413.
- Supporting Information