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在水溶液中烷基苯和烷氧基苯的溴化速率和选择性的结构影响。

Structural effects on the bromination rate and selectivity of alkylbenzenes and alkoxybenzenes in aqueous solution.

机构信息

Department of Chemistry, Towson University, 8000 York Road, Towson, Maryland 21252, USA.

出版信息

Phys Chem Chem Phys. 2021 Aug 12;23(31):16594-16610. doi: 10.1039/d1cp02422a.

Abstract

Aqueous free bromine species (e.g., HOBr, BrCl, Br2, BrOCl, Br2O, and H2OBr+) can react with activated aromatic compounds via electrophilic aromatic substitution to generate products with industrial applications, environmental consequences, and potentially adverse biological effects. The relative contributions of these brominating agents to overall bromination rates can be calculated via nonlinear regression analyses of kinetic data collected under a variety of solution conditions, including variations in parameters (e.g., [Cl-], [Br-], and pH) known to influence free bromine speciation. Herein, kinetic experiments conducted in batch reactors were employed to evaluate the contributions of steric and electronic effects on bromination of monosubstituted alkylbenzenes (ethyl, isopropyl, tert-butyl) and alkoxybenzenes (ethoxy, isopropoxy, tert-butoxy) and to elucidate the inherent reactivities of aqueous brominating agents towards these aromatic compounds. For bromination at the para position of alkylbenzenes, overall reactivity increased from tert-butyl < ethyl ≈ isopropyl. For bromination at the para position of alkoxybenzenes, reactivity increased from tert-butoxy < ethoxy < isopropoxy. In going from ethyl to tert-butyl and ethoxy to isopropoxy, unfavorable steric effects attenuated the favorable electronic effects imparted by the substituents. When comparing unsubstituted benzene, alkyl-, and alkoxybenzenes, the structure of the substituent has a significant effect on bromination rates, nucleophile regioselectivity, and electrophile chemoselectivity. Hirshfeld charges were useful predictors of reactivity and regioselectivity. The experimental results were also modeled using Taft equations. Collectively, these findings indicate that steric effects, electronic effects, and brominating agents other than HOBr can influence aromatic compound bromination in solutions of free bromine.

摘要

游离溴物种(例如 HOBr、BrCl、Br2、BrOCl、Br2O 和 H2OBr+)可以通过亲电芳香取代反应与活化芳香族化合物反应,生成具有工业应用、环境后果和潜在不利生物效应的产物。这些溴化剂对总溴化速率的相对贡献可以通过在各种溶液条件下(包括影响游离溴形态的参数变化,如 [Cl-]、[Br-] 和 pH)下收集的动力学数据的非线性回归分析来计算。在此,采用批式反应器中的动力学实验来评估空间位阻和电子效应对单取代烷基苯(乙基、异丙基、叔丁基)和烷氧基苯(乙氧基、异丙氧基、叔丁氧基)溴化的贡献,并阐明水相溴化剂对这些芳香族化合物的固有反应性。对于烷基苯对位的溴化,总反应性从叔丁基 < 乙基 ≈ 异丙基增加。对于烷氧基苯对位的溴化,反应性从叔丁氧基 < 乙氧基 < 异丙氧基增加。从乙基到叔丁基和乙氧基到异丙氧基,不利的空间位阻效应减弱了取代基赋予的有利电子效应。当比较未取代的苯、烷基和烷氧基苯时,取代基的结构对溴化速率、亲核试剂区域选择性和亲电试剂化学选择性有显著影响。Hirshfeld 电荷可作为反应性和区域选择性的有用预测指标。实验结果还使用 Taft 方程进行了建模。总的来说,这些发现表明,空间位阻效应、电子效应和除 HOBr 以外的溴化剂会影响游离溴溶液中芳香族化合物的溴化反应。

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