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(E,E)-1,3-环庚二烯和反式双环[3.2.0]庚-6-烯的稳定性及热重排

Stability and thermal rearrangement of (E,E)-1,3-cycloheptadiene and trans-bicyclo[3.2.0]hept-6-ene.

作者信息

Qin Changyong, Davis Steven R, Zhao Zhendong, Magers David H

机构信息

Department of Chemistry and Biochemistry, University of Mississippi, University, Mississippi 38677, USA.

出版信息

J Phys Chem A. 2006 Feb 9;110(5):2034-8. doi: 10.1021/jp054885i.

Abstract

The highly strained (E,E)-1,3-cycloheptadiene was shown to be a minimum on the potential energy surface; two structural isomers were found at the MP2 level, but multiconfiguration self-consistent field calculations show that only one is a true minimum. The isomerization of (E,E)-1,3-cycloheptadiene was investigated through double bond rotation, and electrocyclic ring closure. The first pathway gives (E,Z)-1,3-cycloheptadiene, with a barrier of 7.2 kcal x mol(-1), and the second pathway gives the trans isomer of bicyclo[3.2.0]hept-6-ene with a barrier of 13.0 kcal x mol(-1). The strain energy of (E,E)-1,3-cycloheptadiene was calculated using homodesmotic reactions and found to be about 96 kcal x mol(-1) whereas that for (E,Z)-1,3-cycloheptadiene was only 38 kcal x mol(-1), implying that the second trans double bond imparts an additional 58 kcal x mol(-1) in strain energy. The trans isomer of bicyclo[3.2.0]hept-6-ene was calculated to have a strain energy of 69 kcal x mol(-1) and a barrier of 27 kcal x mol(-1) for isomerization to (Z,Z)-1,3-cycloheptadiene. Although many of the structures reported here could be described using a single determinant wave function, several could not, making a multireference method necessary for a complete description of the potential energy surface.

摘要

高度张力的(E,E)-1,3-环庚二烯在势能面上表现为能量最低点;在MP2水平上发现了两种结构异构体,但多组态自洽场计算表明只有一种是真正的最低点。通过双键旋转和电环化闭环反应研究了(E,E)-1,3-环庚二烯的异构化反应。第一条途径生成(E,Z)-1,3-环庚二烯,势垒为7.2 kcal·mol⁻¹,第二条途径生成双环[3.2.0]庚-6-烯的反式异构体,势垒为13.0 kcal·mol⁻¹。利用同系反应计算了(E,E)-1,3-环庚二烯的应变能,发现约为96 kcal·mol⁻¹,而(E,Z)-1,3-环庚二烯的应变能仅为38 kcal·mol⁻¹,这意味着第二个反式双键在应变能上额外增加了58 kcal·mol⁻¹。计算得出双环[3.2.0]庚-6-烯的反式异构体的应变能为69 kcal·mol⁻¹,异构化为(Z,Z)-1,3-环庚二烯的势垒为27 kcal·mol⁻¹。尽管这里报道的许多结构可以用单行列式波函数来描述,但也有一些不行,因此需要用多参考方法来完整描述势能面。

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