Issue 21, 2009

Is nucleophilic cleavage chemistry practical for 4-membered heterocycles?

Abstract

A computational study at the MP2(Full)/6-311++G(d,p)//MP2(Full)/6-31+G(d) level of the ammonolysis of halogen substituted azetidines, oxetanes and thietanes was performed in the gas phase and in the commonly used solvent, acetonitrile. Using the free energy of activation of a benchmark reaction for evaluation of synthetic viability, several haloazetidines and oxetanes that possessed the required reactivity were identified; however, no substituted thietane investigated herein was determined to be synthetically useful under the mild conditions selected for this study. In the case of the azetidines, the side reaction of displacement of halide ion was determined to be the preferred reaction course in acetonitrile; however, the amino product of the reactions of the 2-haloazetidines cleaved at an acceptable rate under mild conditions. For the oxetane derivatives investigated, 2-fluorooxetane proved to be a direct source of ring cleavage product. Nucleophilic cleavage of halogen-substituted azetidines and oxetanes is predicted to be a viable source of functionalized three-carbon moieties under mild conditions in organic synthesis.

Graphical abstract: Is nucleophilic cleavage chemistry practical for 4-membered heterocycles?

Supplementary files

Article information

Article type
Paper
Submitted
06 May 2009
Accepted
29 Jul 2009
First published
26 Aug 2009

Org. Biomol. Chem., 2009,7, 4496-4501

Is nucleophilic cleavage chemistry practical for 4-membered heterocycles?

H. D. Banks, Org. Biomol. Chem., 2009, 7, 4496 DOI: 10.1039/B908861J

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