The mechanism of the McLafferty rearrangement of the butanal radical cation to ethylene and vinyl alcohol cation is found, by ab initio calculations, to be stepwise. The results of a previous ab initio study are inconclusive because of symmetry restriction in their geometry optimization. Although t
McLafferty rearrangement of the radical cations of butanal and 3-fluorobutanal: A theoretical investigation of the concerted and stepwise mechanisms
โ Scribed by Daniel Norberg; Nessima Salhi-Benachenhou
- Publisher
- John Wiley and Sons
- Year
- 2007
- Tongue
- English
- Weight
- 806 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0192-8651
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โฆ Synopsis
Abstract
The stepwise and concerted pathways for the McLafferty rearrangement of the radical cations of butanal (Bu^+^) and 3โfluorobutanal (3FโBu^+^) are investigated with density functional theory (DFT) and ab initio methods in conjunction with the 6โ311+G(d,p) basis set. A concerted transition structure (TS) for Bu^+^, (H), is located with a Gibbs barrier height of 37.7 kcal/mol as computed with CCSD(T)//BHandHLYP. Three pathways for the stepwise rearrangement of Bu^+^ have been located, which are all found to involve different complexes. The barrier height for the H~ฮณ~ transfer is found to be 2.2 kcal/mol, while the two most favorable TSs for the C~ฮฑ~โC~ฮฒ~ cleavage are located 8.9 and 9.2 kcal/mol higher. The energies of the 3FโBu^+^ system have been calculated with the promising hybrid metaโGGA MPWKCIS1K functional of DFT. Interestingly, the fluorine substitution yields a barrier height of only 20.5 kcal/mol for the concerted TS, (3FโH). A smaller computed dipole moment, 12.1 D, for (3FโH) compared with 103.2 D for (H) might explain the stabilization of the substituted TS. The H~ฮณ~ transfer, with a barrier height of 4.9 kcal/mol, is found to be rateโdetermining for the stepwise McLafferty rearrangement of 3FโBu^+^, in contrast to the unsubstituted case. By inspection of the spin and charge distributions of the stationary points, it is noted that the bond cleavages in the concerted rearrangements are mainly of heterolytic nature, while those in the stepwise channels are found to be homolytic. ยฉ 2007 Wiley Periodicals, Inc. J Comput Chem, 2008
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