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A molecular electron density theory study of the enhanced reactivity of aza aromatic compounds participating in Diels-Alder reactions

机译:参与参与Diels-Alder反应的AZA芳族化合物的增强反应性的分子电子密度理论研究

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摘要

The enhanced reactivity of a series of four aza aromatic compounds (AACs) participating in the Diels-Alder (DA) reactions with ethylene has been studied using Molecular Electron Density Theory (MEDT). The analysis of the electronic structure of these AACs allows establishing that the substitution of the C-H unity by the isoelectronic N: unity linearly decreases the ring electron density (RED) of these compounds and concomitantly decreases their aromatic character and increases their electrophilic character. These behaviours not only decrease drastically the activation energies of these DA reactions, but also increase the reaction energies when they are compared with the very unfavourable DA reaction between benzene and ethylene. Very good correlations between the NICS(0) values and the electrophilicity ω indices of these AACs with the RED values are found. The present MEDT study makes it possible to establish two empirical electron density unity (EDU) indices accounting for the contribution of the )C and )N unities, 2.77 and 2.19 e. respectively, for the RED. which is mainly responsible for the reactivity of these AACs. Comprehensive chemical concepts such as electron density, aromaticity and electrophilicity make it possible to explain the chemical reactivity of these AACs participating in DA reactions towards ethylene.
机译:使用分子电子密度理论(Medt)研究了参与Diels-Alder(DA)与乙烯的Diels-Alder(DA)反应的四种AZA芳族化合物(AAC)的增强反应性。这些AAC的电子结构的分析允许建立异电子N:统一的C-H统一的取代线性地降低这些化合物的环形电子密度(红色),并伴随着它们的芳族特性并增加了它们的亲电性质。这些行为不仅急剧下降了这些DA反应的激活能量,而且在与苯和乙烯之间的不利DA反应进行比较时也增加反应能量。找到NICS(0)值与具有红色值的这些AAC的电泳Ω之间的非常好的相关性。目前的Medt研究可以建立两个经验电子密度统一(EDU)指数,占“贡献”的贡献,即)2.77和2.19 E。分别为红色。这主要负责这些AAC的反应性。综合化学概念,如电子密度,芳香性和亲热性,使得可以解释这些AAC的化学反应性参与乙烯的DA反应。

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  • 来源
    《Organic & biomolecular chemistry》 |2020年第2期|292-304|共13页
  • 作者单位

    Department of Organic Chemistry University of Valencia Dr. Moliner 50 46100 Burjassot Valencia Spain;

    Department of Organic Chemistry University of Valencia Dr. Moliner 50 46100 Burjassot Valencia Spain Department of Chemistry and Chemical Biology McMaster University 1280 Main Street West Hamilton Ontario L8S 4L8 Canada;

    Universidad Andres Bello Facultad de Ciencias Exactas Departamento de Ciencias Quimicas Computational and Theoretical Chemistry Group Av. Republica 498 8370146 Santiago Chile;

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