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Complexity-generating hydration reactions via gold-catalyzed addition of boronic acids to alkynes

机译:通过金催化的硼酸向炔烃的加成反应,产生复杂的水合反应

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摘要

Boronic acids can serve as organic soluble substitutes for water molecules in the metal-catalyzed hydration of alkynes. The Au-catalyzed addition of boronic acids to alkynes provides an alternative method for enolate generation, which proceeds under exceptionally mild conditions. The resulting enolates can be trapped by aldehydes present in the reaction mixture, giving aldol products that can be isolated as cyclic borate esters. These compounds are versatile synthetic intermediates that can be elaborated into a variety of products by transformation of the boron moiety. The Au-catalyzed reaction of boronic acids with propargylic alcohols results in efficient Meyer-Schuster rearrangement to the corresponding enones. The rearrangement of tertiary alcohols gives (E)-enones with moderate to good selectivity, and the addition of a boronic acid to the reaction appears to enhance the level of geometrical control. The rearrangement of primary alcohols to terminal enones also occurs readily in the presence of catalytic Au(I) and a boronic acid, and the resulting terminal enones can be reacted with nucleophiles in one-pot procedures to give a variety of β-substituted ketones.
机译:硼酸可以在炔烃的金属催化水合中用作水分子的有机可溶性替代物。 Au催化将硼酸加成到炔烃中提供了另一种生成烯醇盐的方法,该方法在非常温和的条件下进行。所得的烯醇化物可以被反应混合物中存在的醛捕获,从而得到可以作为环状硼酸酯分离的醛醇产物。这些化合物是通用的合成中间体,可通过转化硼部分将其精加工成多种产品。硼酸与炔丙醇的Au催化反应导致有效的Meyer-Schuster重排为相应的烯酮。叔醇的重排给出具有中等至良好选择性的(E)-烯酮,并且向反应中添加硼酸似乎增强了几何控制水平。在催化性Au(I)和硼酸的存在下,伯醇重排成末端烯酮也很容易发生,并且所得的末端烯酮可以一锅法与亲核试剂反应,得到各种β-取代的酮。

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