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Multiphoton infrared initiated thermal reactions of esters: Pseudopericyclic eight-centered cis-elimination

Authors
Ji H.Li L.Xu X.Ham S.Hammad L.A.Birney D.M.
Issue Date
Jan-2009
Publisher
American Chemical Society
Citation
Journal of the American Chemical Society, v.131, no.2, pp 528 - 537
Pages
10
Journal Title
Journal of the American Chemical Society
Volume
131
Number
2
Start Page
528
End Page
537
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/14079
DOI
10.1021/ja804812c
ISSN
0002-7863
1520-5126
Abstract
Multiphoton infrared absorption from a focused, pulsed CO 2 laser was used to initiate gas-phase thermal reactions of cis- and trans-3-penten-2-yl acetate. By varying the helium buffer gas pressure, it was possible to deduce the product distribution from the initial unimolecular reactions, separate from secondary reactions in a thermal cascade. Thus, trans-3-penten-2-yl acetate gives 54 ± 5% of β-elimination to give trans-1,3-pentadiene, 40 ± 3% of [3,3]-sigmatropic rearrangement to give cis-3-penten-2-yl acetate and 6 ± 4% of cis-1,3-pentadiene. Similar irradiation of cis-3-penten-2-yl acetate gives 45 ± 1% of β-elimination to give cis-1,3-pentadiene, 32 ± 2% of [3,3]-sigmatropic rearrangement to give trans-3-penten-2-yl acetate and 23 ± 2% of trans-1,3-pentadiene. The latter process is an eight-centered δ-elimination, which is argued to be a pseudopericyclic reaction. Although β-eliminations have been suggested to be pericyclic, B3LYP/ 6-31G(d,p), MP2 and MP4 calculations suggest that both β- and δ-eliminations, as well as [3,3]-sigmatropic rearrangements of esters are primarily pseudopericyclic in character, as judged by both geometrical, energetic and transition state aromaticity (NICS) criteria. Small distortions from the ideal pseudopericyclic geometries are argued to reflect small pericyclic contributions. It is further argued that when both pericyclic and pseudopericyclic orbital topologies are allowed and geometrically feasible, the calculated transition state may be the result of proportional mixing of the two states; this offers an explanation of the range of pseudopericyclic and pericyclic characters found in related reactions. © 2009 American Chemical Society.
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