Imade Masahiro, Hirao Hajime, Omoto Kiyoyuki, Fujimoto Hiroshi
Division of Molecular Engineering, Kyoto University, Kyoto 606-8501, Japan.
J Org Chem. 1999 Sep 3;64(18):6697-6701. doi: 10.1021/jo990440c.
The endo selectivity in the Diels-Alder reactions of some substituted butadienes with cyclopropene has been investigated theoretically. Electron delocalization between a diene and the dienophile has been presented in terms of pairs of interaction orbitals. In addition to the principal orbital interactions to form new sigma bonds between the diene and the dienophile, the cyclopropene occupied interaction orbital shows significant amplitudes on the methylenic hydrogens to overlap in phase with the paired unoccupied interaction orbital of butadiene at the backbone C(2) and C(3) carbons. The contribution of this secondary orbital interaction to the stabilization of the transition state has been estimated numerically. It has been demonstrated that neither electron delocalization nor the electrostatic interaction interprets preference of the endo-addition over the exo-addition, but the sum of the two terms has been found to show a correlation with the difference in the barrier heights for the two modes of cycloadditions.
已从理论上研究了某些取代丁二烯与环丙烯的狄尔斯-阿尔德反应中的内型选择性。二烯和亲双烯体之间的电子离域作用已通过相互作用轨道对来描述。除了在二烯和亲双烯体之间形成新的σ键的主要轨道相互作用外,环丙烯占据的相互作用轨道在亚甲基氢上显示出显著的振幅,以便与丁二烯在主链C(2)和C(3)碳原子处的成对未占据相互作用轨道同相重叠。已通过数值估算了这种二级轨道相互作用对过渡态稳定性的贡献。结果表明,无论是电子离域作用还是静电相互作用都无法解释内型加成优于外型加成的偏好,但已发现这两个项的总和与两种环加成模式的势垒高度差异存在相关性。