首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Variation of isomer distribution in electrophilic nitration of toluene anisole and o-xylene: Independence of high regioselectivity from reactivity of reagent
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Variation of isomer distribution in electrophilic nitration of toluene anisole and o-xylene: Independence of high regioselectivity from reactivity of reagent

机译:甲苯苯甲醚和邻二甲苯的亲电硝化反应中异构体分布的变化:高区域选择性与试剂反应性的关系

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摘要

The nitration of toluene and anisole was studied with nitrating systems of varying reactivity. High regioselectivity of ortho-para over meta substitution was maintained in all nitrations, regardless of the reactivity of the nitrating system. At the same time, the amount of meta substitution stayed low (3% or less), even when the fast reactions may have reached the encounter-controlled limit. Because the nitration of o-xylene, in which both ring positions are activated by the effect of a methyl group, also does not show any diminishing of regioselectivity, the possibility of a dual mechanistic pathway, in which the activated position would react by a fast, encounter-controlled path, whereas the nonactivated meta position by a slower σ-type path, can be ruled out. The data unambiguously prove that the high regioselectivity of electrophilic aromatic nitration is independent of the reactivity of the reagent, because no significant increase of meta substitution of toluene or anisole was observed, regardless of the activity of the nitrating system. No selectivity-reactivity relationship is thus evident and the ortho-para directing effect of primary substituents over meta substitution is always maintained. The variation in the amount of the meta isomer, up to the observed limit of about 3% in the case of toluene and <2% for anisole, is probably significant but, at the present time, cannot be quantitatively evaluated with the ±0.5% overall reproducible accuracy of the nitrations. Steric factors, such as increasing bulkiness of the nitrating agent, also can affect the ortho-para isomer ratios but are not considered to be the only reason for the observed variations, which reflect the specific nitrating systems, affecting the nature and position of the transition state of highest energy on the reaction pathway.
机译:用不同反应性的硝化系统研究了甲苯和苯甲醚的硝化。不论硝化系统的反应性如何,在所有硝化反应中,邻位对位取代位置换都具有较高的区域选择性。同时,即使快速反应可能已达到遭遇控制的极限,间位取代的数量仍保持较低(3%或更少)。由于邻二甲苯的硝化作用(其中两个环位置均受甲基的作用而活化)也未显示出区域选择性的任何降低,因此存在双机械途径的可能性,其中活化的位置会快速反应,遇到控制的路径,而较慢的σ型路径未激活的元位置可以排除。数据清楚地证明,亲电硝化反应的高区域选择性与试剂的反应性无关,因为无论硝化系统的活性如何,均未观察到甲苯或苯甲醚间位取代的显着增加。因此没有明显的选择性-反应性关系,并且始终保持主要取代基对间取代的邻位对位导向作用。间位异构体的数量变化可能很大,但在甲苯情况下达到观察到的极限,约为甲苯的3%,对苯甲醚的变化<2%,但目前尚无法以±0.5%的数量进行评估。硝化反应的总体重现性。立体因素,例如硝化剂体积的增加,也会影响邻-对异构体的比例,但并不是观察到变化的唯一原因,反映了特定的硝化系统,影响了过渡的性质和位置反应路径上最高能量的状态。

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