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首页> 外文期刊>Journal of the American Chemical Society >Hydrogen-bond-directed highly stereoselective synthesis of Z-enamides via Pd-catalyzed oxidative amidation of conjugated olefins
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Hydrogen-bond-directed highly stereoselective synthesis of Z-enamides via Pd-catalyzed oxidative amidation of conjugated olefins

机译:通过共轭烯烃的Pd催化氧化酰胺化作用,氢键导向的Z-酰胺高度立体选择性合成

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An efficient procedure for the preparation of Z-enamides has been developed, involving the reaction of primary amides with conjugated olefins using a Pd/Cu cocatalyst system. It was found that certain additives, such as phosphine oxides and phosphonates, increase the efficiency of the reaction in nonpolar solvents under an oxygen atmosphere, thus producing a variety of Z-enamides in high yields with excellent stereoselectivity under Wacker-type conditions. The oxidative amidation reaction has a broad substrate scope, allowing alkyl, aryl, and vinyl amides to react with olefins conjugated with ester, amide, phosphonate, and ketone groups. The notable preference for the formation of Z-enamides is presumably due to the presence of an intramolecular hydrogen bond between the amido proton and the carbonyl oxygen. The energy difference between two plausible sigma-alkylamidopalladium intermediates, leading to Z- and E-isomeric enamide products, respectively, was calculated to be 4.18 kcal/mol. The beta-hydride elimination step is assumed to be a stereochemistry-determining step in the overall oxidative amidation process, with the energy level for the transition state leading to the Z- enamide being 5.35 kcal/mol lower than that leading to the E-isomer. The efficiency of photoisomerization between Z- and E-enamides was observed to be largely dependent on the substrates' substituents, and certain E-enamides could be obtained in synthetically useful yields by photoirradiation of Z- isomers. Synthetic application of the present method was successfully demonstrated by a direct formal synthesis of cis-CJ-15,801.
机译:已经开发了制备Z-烯酰胺的有效方法,包括使用Pd / Cu助催化剂体系使伯酰胺与共轭烯烃反应。发现某些添加剂,例如氧化膦和膦酸酯,在氧气气氛下提高了在非极性溶剂中的反应效率,因此在瓦克型条件下以优异的立体选择性高产率地生产了各种Z-酰胺。氧化酰胺化反应具有广泛的底物范围,允许烷基,芳基和乙烯基酰胺与与酯,酰胺,膦酸酯和酮基共轭的烯烃反应。形成Z-酰胺的显着偏好可能是由于酰胺质子和羰基氧之间存在分子内氢键。计算出分别导致Z-和E-异构烯酰胺产物的两种可能的σ-烷基酰胺基钯中间体之间的能量差经计算为4.18 kcal / mol。假定β-氢化物消除步骤是整个氧化酰胺化过程中的立体化学决定步骤,过渡态导致Z-烯酰胺的能级比导致E-异构体的能级低5.35 kcal / mol。 。观察到Z-和E-酰胺之间的光异构化效率很大程度上取决于底物的取代基,并且某些Z-异构体可以通过Z-异构体的光辐照以合成有用的产率获得。通过直接形式的顺式CJ-15801的合成成功地证明了本方法的合成应用。

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