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Direct Nucleophilic Substitution of Free Allylic Alcohols in Water Catalyzed by FeCl36H2O: Which is the Real Catalyst?

机译:通过FECL36H2O催化的水中的游离烯丙基醇的直接亲核取代:这是真实催化剂?

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摘要

The allylic substitution reaction, and particularly the direct allylic amination reaction, of free allylic alcohols in water catalyzed by FeCl36H2O is described. This novel environmentally-friendly methodology allows the use of a wide variety of nitrogenated nucleophiles such as sulfonamides, carbamates, benzamides, anilines, benzotriazoles, and azides, generally giving good yields of the corresponding substitution products. The synthetic applicability of the process is also demonstrated because the reaction can be performed on gram-scale. Additionally, carbon nucleophiles such as silylated nucleophiles, aromatic compounds, and malonates also proved to be suitable for this transformation. Finally, the nature of the catalytic species present in aqueous media is unveiled, pointing towards the formation of hexaaquo iron(III) complexes.
机译:描述了烯丙基替代反应,特别是由FECL36H2O催化的水溶液中的游离烯丙基醇的直接烯丙基胺化反应。 这种新的环保方法允许使用各种氮的亲核试剂,例如磺酰胺,氨基甲磺酸酯,苯胺,苯胺,苯并三唑和叠氮化物,通常提供相应替代产品的良好产量。 还证明了该方法的合成适用性,因为可以对革兰氏级进行反应。 另外,碳亲核试剂如甲硅烷基亲核试剂,芳族化合物和丙酮酸盐也被证明适用于该转化。 最后,揭开了含水介质中存在的催化物质的性质,指向六发铁(III)复合物的形成。

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