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消除反应的 E1cB/E2 机制二分法的理论见解。

Theoretical insights into the E1cB/E2 mechanistic dichotomy of elimination reactions.

机构信息

Centro Integrativo de Biología y Química Aplicada (CIBQA), Universidad Bernardo O Higgins, Santiago 8370854, Chile.

出版信息

Org Biomol Chem. 2019 Nov 27;17(46):9874-9882. doi: 10.1039/c9ob02004g.

DOI:10.1039/c9ob02004g
PMID:31710071
Abstract

E1cB and E2 eliminations have been described as competing mechanisms that can even share a common pathway when the E1cB/E2 borderline mechanism operates. A suitable case study evincing such a mechanistic dichotomy corresponds to the elimination reaction of β-phenylmercaptoethyl phenolate, since its mechanism has been thought to be an E2 elimination. Nonetheless, according to the computational assessment of the substituents on the leaving group, we demonstrate that the reaction proceeds via a borderline E1cB mechanism. Stabilization of the carbanion was provided not only by substituent effects tuning the nucleofugality of the leaving group, but also by a base, since distortion/interaction-activation strain and Natural Bond Order (NBO) analyses suggest a stabilizing interaction between the base and Cβ of the E1cB intermediate. In order to gain insights into these results in a more general context, we have rationalized them with a qualitative picture of the E1cB/E2 mechanistic dichotomy using simple relationships between diabatic parabolas modeling the potential wells of reactants, intermediates, and products. In this Diabatic Model of Intermediate Stabilization (DMIS), the borderline E1cB mechanism for the elimination reaction of β-phenylmercaptoethyl phenolate was discussed in terms of bonding and dynamic stepwise processes. The conceptual model presented herein should be useful for the analysis of any reaction comprising competing one- and two-step mechanisms.

摘要

E1cB 和 E2 消除已被描述为竞争机制,当 E1cB/E2 边界机制起作用时,甚至可以共享共同的途径。一个合适的案例研究证明了这种机制的二分法,对应于β-巯基乙基酚盐的消除反应,因为其机制被认为是 E2 消除。然而,根据对离去基团上取代基的计算评估,我们证明反应通过边界 E1cB 机制进行。不仅通过取代基效应调整离去基团的亲核性来稳定碳负离子,而且还通过碱来稳定碳负离子,因为扭曲/相互作用-活化应变和自然键轨道 (NBO) 分析表明碱与 E1cB 中间体的 Cβ 之间存在稳定相互作用。为了更全面地了解这些结果,我们使用简单的关系来合理化这些结果,这些关系模拟了反应物、中间体和产物的势阱的离轨抛物线,从而对 E1cB/E2 机制二分法进行了定性描述。在这个中间体稳定的离轨模型 (DMIS) 中,β-巯基乙基酚盐消除反应的边界 E1cB 机制是根据键合和动态逐步过程进行讨论的。本文提出的概念模型应该对分析任何包含竞争一步和两步机制的反应都有用。

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