Polo Victor, Andres Juan, Berski Slawomir, Domingo Luis R, Silvi Bernard
Departament de Química Física i Analítica, Universitat Jaume I, 12071, Castelló, Spain.
J Phys Chem A. 2008 Aug 7;112(31):7128-36. doi: 10.1021/jp801429m. Epub 2008 Jun 17.
Thom's catastrophe theory applied to the evolution of the topology of the electron localization function (ELF) gradient field constitutes a way to rationalize the reorganization of electron pairing and a powerful tool for the unambiguous determination of the molecular mechanisms of a given chemical reaction. The identification of the turning points connecting the ELF structural stability domains along the reaction pathway allows a rigorous characterization of the sequence of electron pair rearrangements taking place during a chemical transformation, such as multiple bond forming/breaking processes, ring closure processes, creation/annihilation of lone pairs, transformations of C-C multiple bonds into single ones. The reaction mechanism of some relevant organic reactions: Diels-Alder, 1,3-dipolar cycloaddition and Cope rearrangement are reviewed to illustrate the potential of the present approach.
将汤姆的突变理论应用于电子定位函数(ELF)梯度场拓扑结构的演化,为合理解释电子配对的重组提供了一种方法,也是明确确定给定化学反应分子机制的有力工具。沿着反应路径识别连接ELF结构稳定域的转折点,能够严格表征化学转化过程中发生的电子对重排序列,比如多键形成/断裂过程、闭环过程、孤对电子的产生/湮灭、碳-碳多键向单键的转化。本文回顾了一些相关有机反应(狄尔斯-阿尔德反应、1,3-偶极环加成反应和科普重排反应)的反应机理,以说明本方法的潜力。