首页> 美国卫生研究院文献>Beilstein Journal of Organic Chemistry >New α- and β-cyclodextrin derivatives with cinchona alkaloids used in asymmetric organocatalytic reactions
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New α- and β-cyclodextrin derivatives with cinchona alkaloids used in asymmetric organocatalytic reactions

机译:具有金鸡纳生物碱的新型α-和β-环糊精衍生物用于不对称有机催化反应

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摘要

The preparation of new organocatalysts for asymmetric syntheses has become a key stage of enantioselective catalysis. In particular, the development of new cyclodextrin (CD)-based organocatalysts allowed to perform enantioselective reactions in water and to recycle catalysts. However, only a limited number of organocatalytic moieties and functional groups have been attached to CD scaffolds so far. Cinchona alkaloids are commonly used to catalyze a wide range of enantioselective reactions. Thus, in this study, we report the preparation of new α- and β-CD derivatives monosubstituted with cinchona alkaloids (cinchonine, cinchonidine, quinine and quinidine) on the primary rim through a CuAAC click reaction. Subsequently, permethylated analogs of these cinchona alkaloid–CD derivatives also were synthesized and the catalytic activity of all derivatives was evaluated in several enantioselective reactions, specifically in the asymmetric allylic amination (AAA), which showed a promising enantiomeric excess of up to 75% ee. Furthermore, a new disubstituted α-CD catalyst was prepared as a pure AD regioisomer and also tested in the AAA. Our results indicate that (i) the cinchona alkaloid moiety can be successfully attached to CD scaffolds through a CuAAC reaction, (ii) the permethylated cinchona alkaloid–CD catalysts showed better results than the non-methylated CDs analogues in the AAA reaction, (iii) promising enantiomeric excesses are achieved, and (iv) the disubstituted CD derivatives performed similarly to monosubstituted CDs. Therefore, these new CD derivatives with cinchona alkaloids effectively catalyze asymmetric allylic aminations and have the potential to be successfully applied in other enantioselective reactions.
机译:用于不对称合成的新有机催化剂的制备已成为对映选择性催化的关键阶段。特别地,新的基于环糊精(CD)的有机催化剂的开发允许在水中进行对映选择性反应并再循环催化剂。然而,到目前为止,仅有限数量的有机催化部分和官能团已连接至CD支架。金鸡纳生物碱通常用于催化多种对映选择性反应。因此,在这项研究中,我们报告了通过CuAAC点击反应在金边上用金鸡纳生物碱(金鸡纳碱,金鸡尼丁,奎宁和奎尼丁)单取代的新α-和β-CD衍生物的制备。随后,还合成了这些金鸡纳生物碱-CD衍生物的全甲基化类似物,并在几种对映选择性反应中,特别是在不对称烯丙基胺化(AAA)中评估了所有衍生物的催化活性,这显示出对映体过量高达75%ee 。此外,制备了新的二取代的α-CD催化剂作为纯的AD区域异构体,并且也在AAA中进行了测试。我们的结果表明:(i)金鸡纳生物碱部分可通过CuAAC反应成功连接到CD支架上;(ii)全甲基​​化金鸡纳生物碱– CD催化剂在AAA反应中显示出比非甲基化CDs类似物更好的结果,((iii )实现了有希望的对映体过量,并且(iv)二取代的CD衍生物的表现类似于单取代的CD。因此,这些新的具有金鸡纳生物碱的CD衍生物可有效催化不对称的烯丙基胺化,并具有成功应用于其他对映选择性反应的潜力。

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