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α-氧代烯酮的正常、异常和级联维蒂希烯烃化反应。

Normal, Abnormal, and Cascade Wittig Olefinations of α-Oxoketenes.

机构信息

Aix Marseille Univ, CNRS, Centrale Marseille, iSm2, Marseille, France.

Present address: Université Paris Est, ICMPE (UMR 7182), CNRS, UPEC, 2-8 rue Henri Dunant, 94320, Thiais, France.

出版信息

Chemistry. 2018 Aug 1;24(43):11110-11118. doi: 10.1002/chem.201801533. Epub 2018 Jul 3.

Abstract

α-Oxoketenes generated in situ by a thermal Wolff rearrangement have been found to participate as 1,2- and 1,4-ambident C-electrophilic/O-nucleophilic reagents towards donor/acceptor carbonyl-stabilized Wittig ylides. This resulted in the very direct and practical syntheses of functionalized allenes by a normal Wittig olefination, 4H-pyran-4-ones by an abnormal Wittig olefination, or 4H-pyranylidenes following a Wittig/abnormal Wittig cascade sequence as a function of the substrates combination employed. Mechanistic experimental and computational studies provided a full rational for these reactivity switches. Some unusual mechanistic features for Lewis acid-free Wittig olefinations were identified in this series such as the involvement of betaine intermediates and some degree of reversibility in the normal Wittig olefination. The abnormal Wittig olefination was fully uncovered.

摘要

α-氧代烯酮在热沃尔夫重排中就地生成,被发现作为 1,2-和 1,4-ambident C-亲电/O-亲核试剂,参与给体/受体羰基稳定的维蒂希叶立德。这导致通过正常的维蒂希烯烃化反应非常直接和实用的合成功能化的丙二烯,通过异常的维蒂希烯烃化反应合成 4H-吡喃-4-酮,或在维蒂希/异常维蒂希级联序列之后合成 4H-吡喃亚基,这取决于所使用的底物组合。实验和计算研究为这些反应性转变提供了充分的合理性。在这一系列中,发现了路易斯酸自由维蒂希烯烃化反应的一些不寻常的机制特征,例如甜菜碱中间体的参与以及正常维蒂希烯烃化反应中的一定程度的可逆性。异常维蒂希烯烃化反应被完全揭示。

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