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揭示分子电子密度理论中的离子 Diels-Alder 反应。

Unveiling the Ionic Diels-Alder Reactions within the Molecular Electron Density Theory.

机构信息

Department of Organic Chemistry, University of Valencia, Dr. Moliner 50, E-46100 Valencia, Spain.

出版信息

Molecules. 2021 Jun 14;26(12):3638. doi: 10.3390/molecules26123638.

Abstract

The ionic Diels-Alder (I-DA) reactions of a series of six iminium cations with cyclopentadiene have been studied within the Molecular Electron Density Theory (MEDT). The superelectrophilic character of iminium cations, ω > 8.20 eV, accounts for the high reactivity of these species participating in I-DA reactions. The activation energies are found to be between 13 and 20 kcal·mol lower in energy than those associated with the corresponding Diels-Alder (DA) reactions of neutral imines. These reactions are low selective as a consequence of the cationic character of the TSs, but highly regioselective. Solvents have poor effects on the relative energies, and an unappreciable effect on the geometries. In acetonitrile, the activation energies increase slightly as a consequence of the better solvation of the iminium cations than the cationic TSs. Electron localization function (ELF) topological analysis of the bonding changes along the I-DA reactions shows that they are very similar to those in polar DA reactions. The present MEDT study establishes that the global electron density transfer (GEDT) taking place at the TSs of I-DA reactions, and not steric (Pauli) repulsions such as have been recently proposed, are responsible for the features of these types of DA reactions.

摘要

在分子电子密度理论(MEDT)中研究了一系列六种亚胺阳离子与环戊二烯的离子 Diels-Alder(I-DA)反应。亚胺阳离子的超亲电性,ω>8.20 eV,说明了这些参与 I-DA 反应的物种具有很高的反应活性。发现活化能比相应的中性亚胺的 Diels-Alder(DA)反应低 13 到 20 kcal·mol。这些反应的选择性较低,这是由于过渡态的阳离子性质,但具有高度的区域选择性。溶剂对相对能量的影响不大,对几何形状的影响也可以忽略不计。在乙腈中,由于亚胺阳离子的溶剂化作用优于阳离子过渡态,因此活化能略有增加。沿 I-DA 反应的键变化的电子定域函数(ELF)拓扑分析表明,它们与极性 DA 反应非常相似。本 MEDT 研究表明,在 I-DA 反应的过渡态发生的全局电子密度转移(GEDT),而不是最近提出的立体(Pauli)排斥,是这些类型的 DA 反应的特征的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc5b/8232178/c76d8da344bc/molecules-26-03638-sch001.jpg

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