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威蒂希反应机理的现代诠释。

The modern interpretation of the Wittig reaction mechanism.

机构信息

Centre for Synthesis & Chemical Biology, University College Dublin, Belfield, Dublin 4, Ireland.

出版信息

Chem Soc Rev. 2013 Aug 21;42(16):6670-96. doi: 10.1039/c3cs60105f.

Abstract

The mechanism of the Wittig reaction has long been a contentious issue in organic chemistry. Even now, more than 50 years after its announcement, its presentation in many modern undergraduate textbooks is either overly simplified or entirely inaccurate. In this review, we gather together the huge body of evidence that has been amassed to show that the Li salt-free Wittig reactions of non-stabilised, semi-stabilised and stabilised ylides all occur under kinetic control by a common mechanism in which oxaphosphetane (OPA) is the first-formed and only intermediate. The numerous recent significant additions to the subject - including computational studies and experimental material pertinent to both steps of the reaction (OPA formation and its decomposition) are discussed in detail, and the currently accepted explanations for the source of the stereoselectivity in Wittig reactions are given. We also present the other mechanistic proposals that have been made during the history of the Wittig reaction, and show how they are unable to account for all of the experimental evidence that is now available. Details of certain experimental facts to do with Wittig reactions in the presence of Li cation are also included, although the precise mechanistic details of such reactions are yet to be established conclusively. We make the case that a clear distinction should henceforth be made between the unknown "Li-present" and the now well-established "Li salt-free" Wittig mechanisms.

摘要

维蒂希反应的机理在有机化学中一直是一个有争议的问题。即使在宣布后的 50 多年后,许多现代本科教材对其的介绍要么过于简化,要么完全不准确。在这篇综述中,我们收集了大量的证据,这些证据表明,非稳定、半稳定和稳定叶立德的无锂盐维蒂希反应都是在动力学控制下发生的,其共同机制是首先形成并仅存在氧磷杂环戊烷(OPA)作为中间体。详细讨论了该主题的最近的重要补充,包括与反应的两个步骤(OPA 形成及其分解)相关的计算研究和实验材料,以及目前对维蒂希反应立体选择性来源的解释。我们还提出了在维蒂希反应历史上提出的其他机理假说,并展示了它们如何无法解释现有的所有实验证据。还包括了在存在锂离子的情况下与维蒂希反应有关的某些实验事实的细节,尽管这些反应的确切机理细节尚未最终确定。我们认为,今后应该清楚地区分未知的“有锂离子存在”和现在已经确立的“无锂盐”维蒂希反应机制。

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