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首页> 外文期刊>Chemistry: A European journal >The Mechanism of Phosphonium Ylide Alcoholysis and Hydrolysis: Concerted Addition of the O-H Bond Across the P=C Bond
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The Mechanism of Phosphonium Ylide Alcoholysis and Hydrolysis: Concerted Addition of the O-H Bond Across the P=C Bond

机译:磷鎓叶立德醇解和水解的机制:跨越P = C键的O-H键的协同加成

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摘要

The previous work on the hydrolysis and alcoholysis reactions of phosphonium ylides is summarized and reviewed in the context of their currently accepted mechanisms. Several experimental facts relating to ylide hydrolysis and to salt and ylide alcoholysis are shown to conflict with those mechanisms. In particular, we demonstrate that the pK(a) values of water and alcohols are too high in organic media to bring about protonation of ylide. Therefore, we propose concerted addition of the water or alcohol O-H bond across the ylide P=C bond. In support of this, we provide NMR spectroscopic evidence for equilibrium between ylide and aclohol that does not require the involvement of phosphonium hydroxide. We report the first P-alkoxyphosphorane to be characterised by NMR spectroscopy that does not undergo exchange on an NMR timescale. Two-dimensional NMR spectroscopic techniques have been applied to the characterisation to P-alkoxyphosphoranes for the first time.
机译:关于磷鎓叶立德的水解和醇解反应的先前工作在其目前公认的机理的背景下进行了总结和综述。与叶立德水解以及盐和叶立德醇解有关的一些实验事实表明与这些机理矛盾。特别是,我们证明了水和醇的pK(a)值在有机介质中过高,无法产生叶立德的质子化。因此,我们建议水合或醇O-H键在叶立德P = C键上协同加成。为了支持这一点,我们提供了NMR光谱证据,证明不需要氢氧化hydroxide参与的叶立德和醇之间的平衡。我们报告的第一个P-烷氧基磷烷要通过NMR光谱学表征,而在NMR时标上不会发生交换。二维NMR光谱技术已首次应用于对烷氧基磷烷的表征。

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