Domingo Luis R, Ríos-Gutiérrez Mar, Pérez Patricia
Department of Organic Chemistry, University of Valencia, Dr. Moliner 50, 46100 Burjassot, Valencia, Spain.
Facultad de Ciencias Exactas, Departamento de Ciencias Químicas, Centro de Química Teórica & Computacional, Universidad Andrés Bello, Av. República 275, Santiago 8370146, Chile.
J Org Chem. 2024 Sep 6;89(17):12349-12359. doi: 10.1021/acs.joc.4c01297. Epub 2024 Aug 19.
The electronic effects of Lewis acid (LA) catalysts in reducing the activation energies of polar Diels-Alder (P-DA) reactions have been studied within Molecular Electron Density Theory. To this end, a quantum topological energy partitioning scheme, namely, the Relative Interacting Atomic Energy (RIAE) analysis, is applied to the transition state structures (TSs) and the ground state of the reagents of two different LA-catalyzed P-DA reactions. Analyses of the ξ total energies of the two interacting frameworks (X) show that the electronic energy stabilization of the electrophilic frameworks, resulting from the global electron density transfer (GEDT), is the cause of an effective decrease of the activation energies. On the other hand, an in-depth analysis of the ξ intra-atomic energies of the atoms belonging to the electrophilic ethylenic framework in the LA-catalyzed P-DA reactions of cyclopentadiene with acrolein indicates that the strong electronic stabilization of the carbonyl carbon, resulting from the GEDT taking place at the TSs, is the main factor responsible for the decrease of the activation energies in these LA-catalyzed P-DA reactions. Finally, the increase in GEDT at the TSs of these P-DA reactions causes an increase in the larger C-C distance, resulting from the stabilization of the electrophilic framework, thereby decreasing the suggested .
在分子电子密度理论框架下,研究了路易斯酸(LA)催化剂在降低极性狄尔斯-阿尔德(P-DA)反应活化能方面的电子效应。为此,一种量子拓扑能量划分方案,即相对相互作用原子能(RIAE)分析,被应用于两种不同的LA催化的P-DA反应的过渡态结构(TSs)和反应物的基态。对两个相互作用框架(X)的ξ总能量分析表明,由全局电子密度转移(GEDT)导致的亲电框架的电子能量稳定化是活化能有效降低的原因。另一方面,对环戊二烯与丙烯醛的LA催化的P-DA反应中属于亲电烯框架的原子的ξ原子内能量的深入分析表明,在过渡态发生的GEDT导致的羰基碳的强电子稳定化是这些LA催化的P-DA反应中活化能降低的主要因素。最后,这些P-DA反应过渡态处GEDT的增加导致较大的C-C距离增加,这是由于亲电框架的稳定化,从而降低了建议值。