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内型环加成反应中次级轨道重叠的密度泛函理论研究。以丁二烯与环丙烯之间的狄尔斯-阿尔德反应为例。

A Density Functional Theory Study of Secondary Orbital Overlap in Endo Cycloaddition Reactions. An Example of a Diels-Alder Reaction between Butadiene and Cyclopropene.

作者信息

Jursic Branko S.

机构信息

Department of Chemistry, University of New Orleans, New Orleans, Louisiana 70148.

出版信息

J Org Chem. 1997 May 16;62(10):3046-3048. doi: 10.1021/jo9620223.

Abstract

Density functional theory (B3LYP, BLYP) and ab initio (HF, MP2, and QCISD(T)) methods support the hypothesis that transition state structures for the addition of cyclopropene to butadiene is stabilized through interactions between the hydrogen of cyclopropene and the pi-bond of butadiene. This finding is supported by the computions of bond orders and charge separations and by the differences in frontier orbital energies. Because the interactions between the hydrogen of cyclopropene and the pi-bond of butadiene is possible only in an endo transition state structure, it is conceivable that the formation of an endo cycloadduct should be dominant. This is confirmed by the computation of a lower activation barrier, approximately 2.0 kcal/mol, for the endo transition state structure than for the exo transition state structure.

摘要

密度泛函理论(B3LYP、BLYP)和从头算(HF、MP2和QCISD(T))方法支持这样一种假设:环丙烯加成到丁二烯的过渡态结构通过环丙烯的氢与丁二烯的π键之间的相互作用而得到稳定。键级和电荷分离的计算以及前沿轨道能量的差异支持了这一发现。由于环丙烯的氢与丁二烯的π键之间的相互作用仅在endo过渡态结构中才可能发生,因此可以想象endo环加成产物的形成应该占主导。对于endo过渡态结构,计算得到的活化能垒约为2.0千卡/摩尔,低于exo过渡态结构,这证实了上述结论。

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