Ab Initio Molecular Orbital Calculations on Allylic 1,3-Strain of Electron-Donor- and Electron-Acceptor-Substituted Alkenes
β Scribed by Tietze, Lutz F. ;Schulz, Gerhard
- Publisher
- John Wiley and Sons
- Year
- 1996
- Tongue
- English
- Weight
- 427 KB
- Volume
- 1996
- Category
- Article
- ISSN
- 0947-3440
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β¦ Synopsis
Abstract
Ab initio calculations on the conformations of several electronβrich and electronβpoor alkenes 2, 8β15 were performed up to the MP2/6β31G^*^/RHF/6β31G^*^ level. It was proven that allylic 1,3βstrain can be traced back to steric interactions between the allylic center and the (Z) substituent of the double bond. The electron density of the double bond seems to have no effect on the difference in energy between the global and the local minimum. The local minimum (180Β° conformation) of (Z)βmethylβsubstituted alkenes 2, 14 and 15 carrying a methyl, carboxyl and methoxy group, respectively, at the double bond in (E) position, lies 3.37β3.52 kcal/mol above the 0Β° conformation (global minimum); thus, the (E) substituent has no significant influence on this energy difference and therefore on the equilibrium distribution.
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