Four-Membered Heterocycles with a Carbon−Heteroatom Exocyclic Double Bond at the 3-Position:  Puckering Potential and Thermodynamic Properties

Peter Vansteenkiste, Veronique Van Speybroeck,* Guido Verniest, Norbert De Kimpe, and Michel Waroquier
Center of Molecular Modeling, Ghent University, Proeftuinstraat 86, B-9000 Ghent, Belgium, Department of Organic Chemistry, Faculty of Bioscience Engineering, Ghent University, Coupure Links 653, B-9000 Ghent, Belgium
J. Phys. Chem. A, 2007, 111 (14), pp 2797–2803
DOI: 10.1021/jp068454r
Publication Date (Web): March 16, 2007
Copyright © 2007 American Chemical Society

 Center of Molecular Modeling.

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 To whom all correspondence should be addressed. E-mail :  veronique.vanspeybroeck@ugent.be. Fax:  32 (0) 9 264 66 97.

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 Department of Organic Chemistry.

Abstract

Despite the specific importance of four-membered heterocycles with a carbon−heteroatom double bond at the 3-position in organic and medicinal chemistry, little attention has been given up to now to theoretical computational studies on these molecules. However, the overall geometry, and degree of ring puckering especially, could significantly influence the reactivity and biological properties of these four-membered ring compounds. In this paper, focus is made on the influence of different substituents on the equilibrium geometry, ring puckering potential, and thermodynamic quantities. It was found that these properties are mainly affected by the heteroatom (oxygen, nitrogen, sulfur, phosphorus) contained in the ring skeleton. Moreover, the correct description of the puckering potential with the hindered rotor treatment leads to substantial corrections on the thermodynamic properties in the harmonic oscillator approximation.

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History

  • Published In Issue April 12, 2007
  • Received December 8, 2006
    Revised February 2, 2007

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