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Oxadendralenes in asymmetric organocatalysis for the construction of tetrahydroisochromenes

机译:Oxadendralenes在不对称有机催化中用于四氢异色烯的构建

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摘要

Oxadendralenes are integrated in a novel manner into a one-pot cascade utilizing synergistic catalysis for the construction of valuable and complex bicyclic heterocyclic scaffolds. The construction is based on the organocatalytic activation of the oxadendralenes generating a vinylogous iminium-ion intermediate which is set-up for a 1,6-addition with an enamine formed from an aldehyde and the same organocatalyst. This reaction generates a cyclic oxadendralenic intermediate, which acts as an electron-deficient heterodiene reacting in a Lewis-acid catalyzed hetero-Diels–Alder reaction with vinyl ethers to form tetrahydroisochromenes with five continuous stereocenters in high yields, >20 : 1 dr and 99% ee. This synergistic organo- and Lewis-acid catalysed system also displays high tolerance for variation in oxadendralenes and aldehydes, which provides tetrahydroisochromenes with high diversity in the substituent pattern and the same excellent stereoselectivities. Mechanistic studies have been performed to account for the activation modes and stereochemical outcome of the reaction. The reaction concept has been extended to also include a sequential organocatalytic reaction of oxadendralenes with aldehydes, in which the enamine formed from the aldehyde and the organocatalyst act both in the first catalytic cycle forming the cyclic oxadendralenic intermediate and in a second catalytic cycle leading to tetrahydroisochromenes in good yields and excellent stereoselectivities. Mechanistic studies reveal that the stereochemistry of the organocatalyst has an influence on the diastereoselectivity of the reaction sequence. Some transformations of the tetrahydroisochromenes are also presented. The chiral tetrahydroisochromenes formed might be applied in the diversified synthesis of important drugs.
机译:Oxadendralenes以一种新颖的方式被整合到一锅级联中,利用协同催化来构建有价值的和复杂的双环杂环骨架。该构造基于氧杂二烯的有机催化活化,从而产生乙烯基亚胺基离子离子中间体,该中间体被设置为与由醛和相同的有机催化剂形成的烯胺进行1,6-加成。该反应生成了一个环状的氧杂二十二烯中间产物,该中间体作为缺电子的杂二烯,在路易斯酸催化的杂狄尔斯-阿尔德反应中与乙烯基醚反应,形成具有五个连续立构中心的四氢异色烯,产率高,> 20:1 dr和99 %ee。这种协同的有机酸和路易斯酸催化体系还显示出对氧杂草烯和醛变化的高耐受性,这提供了在取代基图案中具有高度多样性和相同优异的立体选择性的四氢异色酮。已经进行了机理研究以说明反应的活化方式和立体化学结果。该反应概念已经扩展到还包括氧杂二十二烯与醛的顺序有机催化反应,其中由醛和有机催化剂形成的烯胺在形成环状乙二烯二烯中间体的第一催化循环中和在导致四氢异色酮的第二催化循环中均起作用。具有良好的收率和出色的立体选择性。机理研究表明,有机催化剂的立体化学对反应顺序的非对映选择性有影响。还提出了四氢异色酮的一些转化。形成的手性四氢异色酮可用于重要药物的多样化合成。

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