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DFT 研究 Al₂Cl₆ 催化的苯芳香族化合物的 Friedel-Crafts 酰化反应。

A DFT study of the Al₂Cl₆-catalyzed Friedel-Crafts acylation of phenyl aromatic compounds.

机构信息

Normandy University, COBRA UMR 6014 & FR 3038, Université de Rouen, INSA Rouen, CNRS, 1 rue Tesniére, 76821, Mont-Saint-Aignan Cedex, France.

出版信息

J Mol Model. 2013 Nov;19(11):4947-58. doi: 10.1007/s00894-013-1984-8. Epub 2013 Sep 20.

Abstract

The reaction pathways of several Friedel-Crafts acylations involving phenyl aromatic compounds were studied using density functional theory. The reactions were related to the Friedel-Crafts polycondensation of polyaryletherketones. In particular, the acylation of benzene with benzoyl chloride to form benzophenone and variations on this reaction were investigated. The acylation of benzene by one molecule of terephthaloyl chloride or isophthaloyl chloride as well as acylations at the m-, o-, and p-positions of diphenyl ether with one molecule of benzoyl chloride were studied. Adding an additional acyl chloride group to the electrophile appeared to have little influence on the reaction pathway, although the activation energy for the C-C bond-forming steps that occurred when isophthaloyl choride was used was different to the activation energy observed when terephthaloyl chloride was used. Upon changing the nucleophile to diphenyl ether, the reactivity changed according to the trend predicted on based on the o-, p-directing effects of the ether group. The deprotonation step that restored aromaticity varied widely according to the reaction. The rate-determining step in all of the studied reactions was the formation of the acylium ion, followed in importance by either the formation of the Wheland intermediate or the abstraction of hydrogen, depending on the reactivity of the nucleophile.

摘要

使用密度泛函理论研究了涉及苯芳族化合物的几种傅-克酰基化反应途径。这些反应与聚芳醚酮的傅-克缩聚有关。特别是,研究了苯与苯甲酰氯的酰化反应,以形成二苯甲酮,以及该反应的变化形式。研究了苯与对苯二甲酰氯或间苯二甲酰氯的单分子酰化以及二苯醚的 m、o 和 p 位与一分子苯甲酰氯的酰化。向亲电试剂中添加额外的酰氯基团似乎对反应途径影响不大,尽管当使用间苯二甲酰氯时,发生 C-C 键形成步骤的活化能与使用对苯二甲酰氯时观察到的活化能不同。当将亲核试剂改为二苯醚时,根据醚基的 o-、p-导向效应预测的趋势,反应性发生变化。根据反应的不同,恢复芳香性的脱质子步骤变化很大。在所有研究的反应中,速率决定步骤都是酰基正离子的形成,其次是 Wheland 中间体的形成或氢的提取,这取决于亲核试剂的反应性。

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