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Tandem Radical-Addition-Aldol-Type Reaction of an ,-Unsaturated Oxime Ether

机译:串联自由基 - 添加 - 饱和肟醚的Aldol型反应

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Conjugate addition of radical species has been recognized as a versatile tool for introducing an alkyl group into the position of ,-unsaturated carbonyl compounds,[1] and the subsequent trapping of the intermediate radical species with allyltin compounds has been widely studied.[2], [3] Tandem reactions are among the most efficient synthetic methods. However, those that proceed sequentially through ionic species sometimes exhibit problematic drawbacks such as the need for exacting reaction conditions, whereas undesired polymerization may result from tandem radical reactions. A combination of radical and ionic processes may alleviate these problems and could thus be a promising approach. Oshima and co-workers first demonstrated that a tandem radical addition-aldol condensation of enones or enals could be performed via the formation of an intermediate boryl enolate.[4] Other groups have recently reported tandem reactions involving radical and ionic processes for the convenient synthesis of highly complex molecules.[5] However, there are only limited examples which employ enolate intermediates formed by a radical addition reaction. The goal of our work is to develop a highly efficient carbon-carbon bond-construction method by taking advantage of a novel hybrid radical-ionic reaction involving the radical addition to ,-unsaturated oxime ethers and subsequent ionic trapping of the resulting N-boryl enamine by aldehydes.
机译:已经将缀合物的添加物质被认为是一种通用工具,用于将烷基引入, - 饱和羰基化合物,[1]和随后与烯丙酚化合物的中间自由基物质的捕获已被广泛研究。[2] ,[3]串联反应是最有效的合成方法。然而,通过离子物质顺序地进行的那些有时表现出存在的问题缺点,例如对缩小反应条件的需要,而不需要的聚合可能由串联的激进反应产生。自由基和离子过程的组合可以缓解这些问题,因此可以是有希望的方法。 Oshima和同官员首先证明了杆的根本加法 - 烯酮或烯醇的凝胶凝结可以通过形成中间硼酸烯醇组合进行。[4]其他群体最近报道了涉及自由基和离子过程的串联反应,用于方便地合成高度复杂的分子。[5]然而,只有有限的实例,该实例仅使用通过自由基添加反应形成的烯醇的中间体。我们的作品的目标是通过利用新的杂化自由基离子反应来开发一种高效的碳碳粘合施工方法,涉及饱和肟醚的自由基外,以及随后的N-Boryl烯胺的离子捕获通过醛。

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