Chen Zhuo, Nieves-Quinones Yexenia, Waas Jack R, Singleton Daniel A
Department of Chemistry, Texas A&M University , P.O. Box 30012, College Station, Texas 77842, United States.
J Am Chem Soc. 2014 Sep 24;136(38):13122-5. doi: 10.1021/ja506497b. Epub 2014 Sep 12.
The mechanism of the Wittig reaction of anisaldehyde with a stabilized ylide was studied by a combination of (13)C kinetic isotope effects, conventional calculations, and molecular dynamics calculations in a cluster of 53 THF molecules. The isotope effects support a cycloaddition mechanism involving two sequential transition states associated with separate C-C and P-O bond formations. However, the betaine structure in between the two transition states is bypassed as an equilibrated intermediate in most trajectories. The role of the dynamics of solvent equilibration in the nature of mechanistic intermediates is discussed.
通过结合碳 - 13动力学同位素效应、传统计算方法以及在包含53个四氢呋喃分子的簇中的分子动力学计算,研究了茴香醛与稳定叶立德的维蒂希反应机理。同位素效应支持一种环加成机理,该机理涉及与碳 - 碳和磷 - 氧键形成相关的两个连续过渡态。然而,在大多数轨迹中,两个过渡态之间的甜菜碱结构作为平衡中间体被绕过。讨论了溶剂平衡动力学在机理中间体性质中的作用。