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Unified synthesis of mono/bis-arylated phenols via RhIII-catalyzed dehydrogenative coupling

机译:通过RhIII催化的脱氢偶联反应统一合成单/双芳基酚

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摘要

2,6-Bis-arylated phenols are rarely reported and are synthetically challenging. Directed C–H functionalization reactions, using a directing group (DG), might provide a convenient solution to their synthesis. However, this strategy usually results in partial cleavage of the directing group, preventing further/second C–H activation cascades. Herein we report a general strategy that allows for the precise control of the oxidation pathways so that directing groups can be either preserved or cleaved. We found that N-phenoxyacetamides could undergo ortho-arylation reactions with or without an external oxidant, yielding products with different oxidation states, notably the rare bis-arylated phenols. Notably, a unique rhodacycle intermediate was isolated, characterized by X-ray crystallography, and confirmed to be an active catalyst. Switching between internal and external oxidation could be a general strategy in diverse directed C–H functionalization reactions to realize bis-functionalized products.
机译:2,6-双芳基化的苯酚很少报道,并且具有合成挑战性。使用导向基团(DG)进行的定向C–H功能化反应可能为其合成提供便利的解决方案。然而,这种策略通常导致导向基团的部分裂解,阻止了进一步的/第二次CH活化活化级联反应。本文中,我们报告了一种总体策略,该策略允许精确控制氧化途径,以便可以保留或裂解导向基团。我们发现,N-苯氧基乙酰胺可以在有或没有外部氧化剂的情况下进行邻芳基化反应,生成具有不同氧化态的产物,尤其是稀有的双芳基化酚。值得注意的是,分离出独特的rhodocycle中间体,通过X射线晶体学表征,并证实是活性催化剂。内部和外部氧化之间的转换可能是实现多种双官能化H-官能化反应的通用策略。

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