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取代硝基苯分解反应的理论研究

Theoretical study of the decomposition reactions in substituted nitrobenzenes.

作者信息

Fayet Guillaume, Joubert Laurent, Rotureau Patricia, Adamo Carlo

机构信息

Laboratoire d'Electrochimie et Chimie Analytique, CNRS UMR-7575, Ecole Nationale Supérieure de Chimie de Paris (ENSCP), 11 rue P. et M. Curie, F-75231 Paris Cedex 05 France.

出版信息

J Phys Chem A. 2008 May 1;112(17):4054-9. doi: 10.1021/jp800043x. Epub 2008 Apr 5.

Abstract

The influence of substituent nature and position on the unimolecular decomposition of nitroaromatic compounds was investigated using the density functional theory at a PBE0/6-31+G(d,p) level. As the starting point, the two main reaction paths for the decomposition of nitrobenzene were analyzed: the direct carbon nitrogen dissociation (C6H5 + NO2) and a two step mechanism leading to the formation of phenoxyl and nitro radicals (C6H5O + NO). The dissociation energy of the former reaction was calculated to be 7.5 kcal/mol lower than the activation energy of the second reaction. Then the Gibbs free energies were computed for 15 nitrobenzene derivatives characterized by different substituents (nitro, methyl, amino, carboxylic acid, and hydroxyl) in the ortho, meta, and para positions. In meta position, no significant changes appeared in the reaction energy profiles whereas ortho and para substitutions led to significant deviations in energies on the decomposition mechanisms due to the resonance effect of the nitro group without changing the competition between these mechanisms. In the case of para and meta substitutions, the carbon-nitro bond dissociation energy has been directly related to the Hammett constant as an indicator of the electron donor-acceptor effect of substituents.

摘要

采用密度泛函理论在PBE0/6-31+G(d,p)水平上研究了取代基性质和位置对硝基芳烃化合物单分子分解的影响。作为起点,分析了硝基苯分解的两条主要反应路径:直接碳氮解离(C6H5 + NO2)和导致苯氧基和硝基自由基形成的两步机理(C6H5O + NO)。计算得出前一个反应的解离能比第二个反应的活化能低7.5 kcal/mol。然后计算了15种硝基苯衍生物的吉布斯自由能,这些衍生物在邻位、间位和对位具有不同的取代基(硝基、甲基、氨基、羧酸和羟基)。在间位,反应能量分布没有明显变化,而邻位和对位取代由于硝基的共振效应导致分解机理的能量出现显著偏差,同时不改变这些机理之间的竞争关系。在对位和间位取代的情况下,碳-硝基键解离能与哈米特常数直接相关,作为取代基电子供体-受体效应的指标。

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