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首页> 外文期刊>Angewandte Chemie >N-Heterocyclic Carbene Catalyzed (5+1) Annulations Exploiting a Vinyl Dianion Synthon Strategy
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N-Heterocyclic Carbene Catalyzed (5+1) Annulations Exploiting a Vinyl Dianion Synthon Strategy

机译:N-杂环基石催化(5 + 1)共产,利用乙烯基Dianion合成策略

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摘要

Direct polarity inversion of conjugate acceptors provides a valuable entry to homoenolates. N-heterocyclic carbene (NHC) catalyzed reactions, in which beta-unsubstituted conjugate acceptors undergo homoenolate formation and C-C bond formation twice, have been developed. Specifically, the all-carbon (5+1) annulations give a range of mono- and bicyclic cyclohexanones (31 examples). In the first family of annulations, beta-unsubstituted acrylates tethered to a divinyl ketone undergo cycloisomerization, providing hexahydroindenes and tetralins. In the second, partially untethered substrates undergo an intermolecular (5+1) annulation involving dimerization followed by cycloisomerization. While enantioselectivity was not possible with the former, the latter proved viable, allowing cyclohexanones to be produced with high levels of enantiopurity (most >95:5 e.r.) and exclusive diastereoselectivity (>20:1 d.r.). Derivatizations and mechanistic studies are also reported.
机译:共轭受体的直接极性反转为母酚提供了有价值的进入。 已经开发出β-未取代的缀合物受体的N-杂环基石(NHC)催化反应,其中已经开发了两次均蛋白形成和C-C键形成两次。 具体地,全碳(5 + 1)个环化给出一系列单环和双环环己酮(31个实施例)。 在第一家庭的环中,β-未取代的丙烯酸酯,其培养至二乙烯基酮经历环偶异构化,提供六羟基吲哚和四rrollins。 在第二,部分未阻化的底物中经历分子间(5 + 1)环节,涉及二聚化,然后是环旋异构化。 虽然前者是不可能的,但后者证明是可行的,允许用高水平的对脑(大多数> 95:5)和独家非对映选择性(> 20:1 d.r.)产生环己酮。 还报道了衍生化和机械研究。

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