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首页> 外文期刊>Angewandte Chemie >Diastereodivergent Asymmetric 1,4-Addition of Oxindoles to Nitroolefins by Using Polyfunctional Nickel-Hydrogen-Bond-Azolium Catalysts
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Diastereodivergent Asymmetric 1,4-Addition of Oxindoles to Nitroolefins by Using Polyfunctional Nickel-Hydrogen-Bond-Azolium Catalysts

机译:多官能镍氢键偶氮催化剂对硝基烯烃的非对映异构不对称1,4-加成吲哚

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摘要

Diastereodivergency is a challenge for catalytic asymmetric synthesis. For many reaction types, the generation of one diastereomer is inherently preferred, while the other diastereomers are not directly accessible with high efficiency and require circuitous synthetic approaches. Overwriting the inherent preference by means of a catalyst requires control over the spatial positions of both reaction partners. We report a novel polyfunctional catalyst type in which a Ni-II-bis(phen-oxyimine) unit, free hydroxy groups, and an axially chiral bisimidazolium entity participate in the stereocontrol of the direct 1,4-addition of oxindoles to nitroolefins. Both epimers of the 1,4-adduct are accessible in excess on demand by changes to the ligand constitution and configuration. As the products have been reported to be valuable precursors to indole alkaloids, this method should allow access to their epimeric derivatives.
机译:非对映异构性是催化不对称合成的挑战。对于许多反应类型,固有地优选一种非对映异构体的产生,而其他非对映异构体不能高效地直接获得并且需要circuit回合成方法。通过催化剂覆盖固有的偏好,需要控制两个反应伙伴的空间位置。我们报告了一种新型的多官能催化剂类型,其中Ni-II-双(phen-oxyimine)单元,游离羟基和一个轴向手性双咪唑鎓实体参与对吲哚到硝基烯烃的直接1,4-加成的立体控制。 1,4-加合物的两个差向异构体可通过改变配体的组成和构型按需过量获得。由于已报道该产品是吲哚生物碱的有价值的前体,因此该方法应允许获得其差向异构衍生物。

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