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Selenide-catalyzed enantioselective synthesis of trifluoromethylthiolated tetrahydronaphthalenes by merging desymmetrization and trifluoromethylthiolation

机译:脱对称和三氟甲基硫醇化的硒化催化三氟甲基硫醇化四氢萘的对映选择性合成

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Trifluoromethylthiolated molecules are an important class of biologically active compounds and potential drug candidates. Because of the lack of efficient synthetic methods, catalytic enantioselective construction of these molecules is rare and remains a challenge. To expand this field, we herein disclose a bifunctional selenide-catalyzed approach for the synthesis of various chiral trifluoromethylthiolated tetrahydronaphthalenes bearing an all-carbon quaternary stereocenter with gem-diaryl-tethered alkenes and alkynes by merging desymmetrization and trifluoromethylthiolation strategy. The products are obtained in high yields with excellent enantio- and diastereo-selectivities. This method can be applied to the desymmetrization and sulfenylation of diols as well. Computational studies reveal that selenide can activate the electrophilic reagent better than sulfide, confirming the higher efficiency of selenide catalysis in these reactions. On the basis of the theoretical calculations, an acid-derived anion-binding interaction is suggested to exist in the whole pathway and accounts for the observed high selectivities.
机译:三氟甲基硫醇化分子是一类重要的生物活性化合物和潜在的候选药物。由于缺乏有效的合成方法,这些分子的催化对映选择性结构很少见,仍然是一个挑战。为了扩展该领域,我们在此公开了一种双官能硒化催化方法,用于通过合并去对称化和三氟甲基硫醇化策略来合成各种手性三氟甲基硫醇化的四氢萘,这些全手性四元立体中心与宝石-二芳基系链的烯烃和炔烃。以高收率获得具有优异的对映选择性和非对映选择性的产物。该方法也可以应用于二醇的去对称化和亚磺酰基化。计算研究表明,硒化物比硫化物能更好地激活亲电试剂,从而证实了硒化物在这些反应中的催化效率更高。在理论计算的基础上,建议在整个路径中都存在一种酸衍生的阴离子结合相互作用,并解释了观察到的高选择性。

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