Domingo Luis R, Pérez Patricia
Independent Researcher, Av. Tirso de Molina 20, 46015 Valencia, Spain.
Facultad de Ciencias, Universidad San Sebastián, Campus Ciudad Universitaria, Av. del Condor 720, Ciudad Empresarial, Huechuraba, Santiago 8580704, Chile.
Molecules. 2025 May 5;30(9):2052. doi: 10.3390/molecules30092052.
The intramolecular Diels-Alder (IMDA) reactions of four substituted deca-1,3,9-trienes and one N-methyleneocta-5,7-dien-1-aminium with different electrophilic/nucleophilic activations have been studied within the Molecular Electron Density Theory (MEDT) and compared to their intermolecular processes. The topological analysis of the electron density and DFT-based reactivity indices reveal that substitution does not modify neither the electronic structure nor the reactivity of the reagents relative to those involved in the intermolecular processes. The analysis of the relative energies establishes that the accelerations found in the polar IMDA reactions follow the same trend as those found in the intermolecular processes. The geometries and the electronic structures of the five transition state structures involved in the IMDA reactions are highly similar to those found in the intermolecular processes. A relative interacting atomic energy (RIAE) analysis of Diels-Alder and IMDA reactions allows for the establishment of the substituent effects on the activation energies. Although the nucleophilic frameworks are destabilized, the electrophilic frameworks are further stabilized, resulting in a reduction in the activation energies. The present MEDT study demonstrates the remarkable electronic and energetic similarity between the intermolecular and intramolecular Diels-Alder reactions. Only the lower, unfavorable activation entropy associated with the latter renders it 10 times faster than the former.
在分子电子密度理论(MEDT)框架下,研究了四种取代的1,3,9 - 癸三烯和一种N - 亚甲基 - 5,7 - 辛二烯 - 1 - 铵离子在不同亲电/亲核活化作用下的分子内狄尔斯 - 阿尔德(IMDA)反应,并将其与分子间反应过程进行了比较。电子密度的拓扑分析和基于密度泛函理论(DFT)的反应性指数表明,取代作用并未改变试剂相对于分子间反应中所涉及试剂的电子结构和反应性。相对能量分析表明,极性IMDA反应中发现的加速作用与分子间反应过程中的加速作用遵循相同趋势。IMDA反应中涉及的五个过渡态结构的几何形状和电子结构与分子间反应过程中发现的高度相似。对狄尔斯 - 阿尔德反应和IMDA反应进行的相对相互作用原子能(RIAE)分析,有助于确定取代基对活化能的影响。尽管亲核骨架不稳定,但亲电骨架进一步稳定,导致活化能降低。当前的MEDT研究表明,分子间和分子内狄尔斯 - 阿尔德反应在电子和能量方面具有显著的相似性。只是后者较低的、不利的活化熵使其比前者快10倍。