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Organocatalytic synthesis of chiral tetrasubstituted allenes from racemic propargylic alcohols

机译:外消旋炔丙醇的有机催化合成手性四取代的烯丙基

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摘要

Although chiral allene preparation via formal SN2’ nucleophilic substitutions of enantioenriched propargylic derivatives or metal-catalyzed reactions of racemic propargylic derivatives has attracted considerable attention and found applications in many areas of research, direct use of propargylic alcohols instead of propargylic derivatives for catalytic asymmetric allene synthesis is unknown. Here, we show that a highly enantioselective synthesis of tetrasubstituted allenes from racemic propargylic alcohols has been realized by organocatalysis with good efficiency (up to 96% yield and 97% ee). The intermolecular C–C and C–S bond formation was achieved efficiently with simultaneous stereocontrol over the axial chirality. Furthermore, an adjacent quaternary stereocenter could also be constructed. Mechanistically, the reaction may involve efficient stereocontrol on the propargylic cation by its chiral counter anion or 1,8-conjugate addition of para-quinone methides. In sharp contrast to previous central chirality construction, this process employs quinone methides for axial chirality construction.
机译:尽管通过对映体富集的炔丙基衍生物的正式SN2'亲核取代或外消旋炔丙基衍生物的金属催化反应制备手性烯丙二烯已经引起了相当多的关注并在许多研究领域中得到了应用,但直接使用炔丙醇代替炔丙基衍生物来催化不对称丙二烯合成未知。在这里,我们表明,通过有机催化已经以良好的效率(高达96%的收率和97%的ee)实现了由外消旋炔丙醇对四取代烯的高对映选择性合成。有效地实现了分子间C–C和C–S键的形成,同时对轴向手性进行了立体控制。此外,也可以构造相邻的四元立体中心。从机理上讲,该反应可包括通过其手性抗衡阴离子或对醌甲基化物的1,8-共轭加成对炔丙基阳离子进行有效的立体控制。与以前的中心手性结构形成鲜明对比的是,该方法采用醌甲基化物进行轴向手性结构。

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