Issue 10, 2002

Solvent-free chelation-assisted hydroacylation of olefin by rhodium(I) catalyst under microwave irradiation

Abstract

A solvent-free protocol for the rhodium(I)-catalyzed intermolecular hydroacylation was achieved under microwave irradiation to furnish various ketones in high yields. The reactivity was improved by the addition of aniline as well as 2-amino-3-picoline and benzoic acid to induce a transimination, which facilitates the formation of intermediate aldimine. A comparison of the reactivity between the reaction performed under the conventional heating mode and the microwave irradiation using monomode reactor revealed an important specific microwave effect during the chelation-assisted hydroacylation. It is supposed that the observed specific microwave effect mainly originates from the formation of aldimine by condensation of aldehyde and amine, which leads to a development of charges in the transition state. This result confirms that the rate-determining step of the reaction is the initial condensation step rather than the subsequent hydroiminoacylation step.

Graphical abstract: Solvent-free chelation-assisted hydroacylation of olefin by rhodium(I) catalyst under microwave irradiation

Article information

Article type
Paper
Submitted
14 Jan 2002
Accepted
11 Apr 2002
First published
25 Apr 2002

J. Chem. Soc., Perkin Trans. 1, 2002, 1280-1285

Solvent-free chelation-assisted hydroacylation of olefin by rhodium(I) catalyst under microwave irradiation

A. Loupy, S. Chatti, S. Delamare, D. Lee, J. Chung and C. Jun, J. Chem. Soc., Perkin Trans. 1, 2002, 1280 DOI: 10.1039/B200442A

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