Manoharan M, Geerlings P
Eenheid Algemene Chemie, Vrije Universiteit Brussel, Faculteit Wetenschappen, Pleinlaan 2, B-1050 Brussels, Belgium.
J Org Chem. 2000 Nov 17;65(23):7971-6. doi: 10.1021/jo001156k.
The Diels-Alder reactions of various quinodimethanes with ethylene are studied by means of ab initio molecular orbital and density functional theory (DFT) to show the effect of aromaticity on the reaction path. The calculations reveal that these reactions are both kinetically and thermodynamically much more favored than the prototype butadiene-ethylene Diels-Alder reaction due to the aromatization process in the transition state (TS) and product. A progressive aromaticity gain is noticed during the reaction, and hence the partial pi-delocalized peripheral diene ring function is coupled with the six-electron sigma,pi-delocalized cyclic unit resulting in an enhanced aromaticity of the TS. The magnetic criteria such as magnetic susceptibility exaltation and nucleus independent chemical shift provide definitive evidence for and fully support the aromatization process and the aromaticity of the TS. The extent of sigma-pi delocalization and the bond make-break at the TS are consistent with each other, and this is strongly influenced by the adjacent pi-aromatization process. Moreover, the aromaticity trends in the resulting TSs and products parallel the activation and reaction energies; the extent of aromatization increases with increasing reaction rate and exothermicity. This confirms that aromaticity is the driving factor governing cycloadditions involving quinodimethanes.
通过从头算分子轨道和密度泛函理论(DFT)研究了各种醌二甲烷与乙烯的狄尔斯-阿尔德反应,以显示芳香性对反应路径的影响。计算结果表明,由于过渡态(TS)和产物中的芳构化过程,这些反应在动力学和热力学上比原型丁二烯-乙烯狄尔斯-阿尔德反应更有利。在反应过程中观察到芳香性逐渐增加,因此部分π-离域的外围二烯环功能与六电子σ,π-离域的环状单元相结合,导致TS的芳香性增强。诸如磁化率升高和核独立化学位移等磁性标准为芳构化过程和TS的芳香性提供了确凿的证据并给予了充分支持。TS处的σ-π离域程度和键的断裂相互一致,并且这受到相邻π-芳构化过程的强烈影响。此外,所得TS和产物中的芳香性趋势与活化能和反应能平行;芳构化程度随着反应速率和放热性的增加而增加。这证实了芳香性是控制涉及醌二甲烷的环加成反应的驱动因素。