Comprehensive Mechanistic Scenario for the Cu-Mediated Asymmetric Propargylic Sulfonylation Forging Tertiary Carbon Stereocenters

Abstract

Metal-catalyzed propargylic transformations represent a powerful tool in organic synthesis to achieve new carbon–carbon and carbon–heteroatom bonds. However, detailed knowledge about the mechanistic intricacies related to the asymmetric formation of propargylic products featuring challenging heteroatom-substituted tertiary stereocenters is scarce and therefore provides an inspiring challenge. Here, we present a meticulous mechanistic analysis of a propargylic sulfonylation reaction promoted by a chiral Cu catalyst through a combination of experimental techniques and computational studies. Surprisingly, the enantio-discriminating step is not the coupling between the nucleophile and the propargylic precursor but rather the following proto-demetalation step, a scenario further validated by computing enantio-induction levels under other previously reported experimental conditions. A full mechanistic scenario for this propargylic substitution reaction is provided, including a catalyst pre-activation stage, a productive catalytic cycle, and an unanticipated non-linear effect at the Cu(I) oxidation level.

Document Type

Article


Accepted version

Language

English

Subject

Química

Pages

13 p.

Publisher

ACS Publications

Grant Agreement Number

Cerca program/Generalitat de Catalunya

ICREA

MICINN (PID2020-112684GB-I00, PID2020-112825RB-100, Severo Ochoa Excellence Accreditation 2020−2023 CEX2019-000925-S)

Ministerio de Universidades for a predoctoral fellowship (FPU18/01138)

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JACS 2023 145 6442–Comprehensive Mechanistic Scenario.pdf

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Creative Commons Attribution-NonCommercial-NoDerivs License

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