Highly Diastereo- and Branched-Selective Rearrangement of Substituted N-Alloc-N-Allyl Ynamides via Pd-Auto-Tandem Catalysis

25 April 2022, Version 1
This content is a preprint and has not undergone peer review at the time of posting.

Abstract

An auto-tandem catalytic, branched-selective rearrangement of substituted N-alloc-N-allyl ynamides was developed. This reaction provides ready access to complex quaternary nitrile products with vinylogous stereocenters in excellent diastereoselectivity, including the formation of contiguous all-carbon quaternary centers. The stereochemical outcome is determined via a Pd(0) catalyzed dipolar ketenimine aza-Claisen rearrangement inside a deep cleft on the catalyst. Computational studies exemplify the key role ligand geometry plays throughout the reaction coordinate in this previously unreported mechanism. This study provides new reaction pathways for both π-allyl and sigmatropic rearrangements.

Keywords

C-N activation
Palladium catalysis
vicinal quaternary centers
Nitrile
Allylic rearrangement
p-Allyl chemistry

Supplementary materials

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Description
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Supporting Information
Description
Experimental procedures, computational details (including cartesian coordinates) and copies of NMR spectra
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Supplementary weblinks

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