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在确定半蒈二烯、野蛮烷、蒈二烯和二氢蒈二烯的简并科普重排的相对势垒高度时,双高芳香性稳定化有多重要?

How important is bishomoaromatic stabilization in determining the relative barrier heights for the degenerate Cope rearrangements of semibullvalene, barbaralane, bullvalene, and dihydrobullvalene?

作者信息

Hrovat David A, Brown Eric C, Williams Richard Vaughan, Quast Helmut, Borden Weston Thatcher

机构信息

Department of Chemistry, University of Washington, P.O. Box 351700, Seattle, Washington 98195-1700, USA.

出版信息

J Org Chem. 2005 Apr 1;70(7):2627-32. doi: 10.1021/jo048268m.

Abstract

[structure: see text] B3LYP/6-31G* calculations have been used to investigate the origins of the relative barrier heights for the degenerate Cope rearrangements of semibullvalene (1), barbaralane (2), bullvalene (3), and dihydrobullvalene (4). We conclude from our calculations that, of the four transition structures (TSs), that for rearrangement of 1 has the smallest amount of interallylic bonding. Nevertheless, relief of strain in the reactant confers on 1 the lowest barrier to Cope rearrangement. Conjugation between the cyclopropane ring and the pi bond of the etheno bridge in 3 makes the barrier for its Cope rearrangement higher than that for 4 and also contributes to making the barrier for 3 higher than that for 2. However, the relatively low barrier to the Cope rearrangement of 2 is largely due to the TS for this reaction having the largest amount of interallylic bonding of all four TSs.

摘要

[结构:见正文] 采用B3LYP/6 - 31G*计算方法研究了半富烯(1)、巴拉巴拉烷(2)、富烯(3)和二氢富烯(4)简并Cope重排相对势垒高度的起源。我们从计算中得出结论,在这四种过渡结构(TSs)中,1重排的过渡结构内烯丙基键合量最少。然而,反应物中应变的缓解赋予1最低的Cope重排势垒。3中环丙烷环与乙烯桥的π键之间的共轭使得其Cope重排的势垒高于4,也使得3的势垒高于2。然而,2的Cope重排相对较低的势垒很大程度上是由于该反应的过渡结构在所有四种过渡结构中具有最大量的内烯丙基键合。

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