Pentannulation of N-heterocycles by a tandem gold-catalyzed [3,3]-rearrangement/Nazarov reaction of propargyl ester derivatives: a computational study on the crucial role of the nitrogen atom

Beilstein J Org Chem. 2020 Dec 15:16:3059-3068. doi: 10.3762/bjoc.16.255. eCollection 2020.

Abstract

The tandem gold(I)-catalyzed rearrangement/Nazarov reaction of enynyl acetates in which the double bond is embedded in a piperidine ring was computationally and experimentally studied. The theoretical calculations predict that the position of the propargylic acetate substituent has a great impact on the reactivity. In contrast to our previous successful cyclization of the 2-substituted substrates, where the nitrogen favors the formation of the cyclized final product, the substitution at position 3 was computed to have a deleterious effect on the electronic properties of the molecules, increasing the activation barriers of the Nazarov reaction. The sluggish reactivity of 3-substituted piperidines predicted by the calculations was further confirmed by the results obtained with some designed substrates.

Keywords: DFT calculations; N-heterocycles; Nazarov reaction; gold catalysis.

Grants and funding

This research was funded by European Horizon 2020-MSCA (ITN-EJD Project CATMEC 14/06-721223, fellowship to G. Z.) and a European Marie Curie program (FP7-PEOPLE-2012-ITN, Project ECHONET, No. 316379, fellowship to G. Z.)