Departamento De Ciencias Quimicas, Facultad De Ciencias Exactas, Universidad Andres Bello, Av. Republica 275, Codigo Postal 8370146, Santiago, Chile.
Millennium Nucleus Chemical Processes and Catalysis (CPC), Laboratorio de Quimica Teorica Computacional (QTC), Facultad de Quimica, Pontificia Universidad Catolica de Chile, Av. Vicuña Mackenna 4860, Casilla 306, Correo 22, Santiago, Chile.
J Comput Chem. 2016 Sep 30;37(25):2279-303. doi: 10.1002/jcc.24453. Epub 2016 Jul 22.
By means of the conceptual density functional theory, the so-called dual descriptor (DD) has been adapted to be used in any closed-shell molecule that presents degeneracy in its frontier molecular orbitals. The latter is of paramount importance because a correct description of local reactivity will allow to predict the most favorable sites on a molecule to undergo nucleophilic or electrophilic attacks; on the contrary, an incomplete description of local reactivity might have serio us consequences, particularly for those experimental chemists that have the need of getting an insight about reactivity of chemical reagents before using them in synthesis to obtain a new compound. In the present work, the old approach based only on electronic densities of frontier molecular orbitals is replaced by the most accurate procedure that implies the use of total electronic densities thus keeping consistency with the essential principle of the DFT in which the electronic density is the fundamental variable and not the molecular orbitals. As a result of the present work, the DD will be able to properly describe local reactivities only in terms of total electronic densities. To test the proposed operational formula, 12 very common molecules were selected as the original definition of the DD was not able to describe their local reactivities properly. The ethylene molecule was additionally used to test the capability of the proposed operational formula to reveal a correct local reactivity even in absence of degeneracy in frontier molecular orbitals. © 2016 Wiley Periodicals, Inc.
借助于概念密度泛函理论,所谓的双描述符(DD)已经被改编为可用于任何具有前线分子轨道简并的闭壳分子。后者是至关重要的,因为对局部反应性的正确描述将允许预测分子上最有利于发生亲核或亲电攻击的位置;相反,局部反应性的不完整描述可能会产生严重的后果,特别是对于那些在使用化学试剂进行合成以获得新化合物之前需要深入了解其反应性的实验化学家。在目前的工作中,仅基于前线分子轨道电子密度的旧方法被最准确的方法所取代,该方法涉及使用总电子密度,从而与密度泛函理论的基本原则保持一致,其中电子密度是基本变量,而不是分子轨道。作为本工作的结果,DD 将能够仅根据总电子密度正确描述局部反应性。为了测试所提出的操作公式,选择了 12 个非常常见的分子,因为 DD 的原始定义不能正确描述它们的局部反应性。还使用乙烯分子来测试所提出的操作公式的能力,即使在前线分子轨道中没有简并的情况下,也能揭示正确的局部反应性。©2016 年威利父子公司。