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Critical profiles of chiral diether-mediated asymmetric conjugate aminolithiation of enoate with lithium amide as a key to the total synthesis of (−)-kopsinine

机译:关键的配置文件的手性二醚介导的烯醇酸与烯酰胺的不对称共轭氨基锂化作为(-)-kopsinine的全合成的关键

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摘要

Chiral diether-mediated asymmetric aminolithiation of indolylpropenoate with lithium amide in toluene at -78 °C for 15 min gave, after aqueous ammonium chloride quench, the corresponding conjugate addition product with 97% ee in 89% yield. If hydrogen chloride in methanol was selected as a quencher, however, aminolithiation at -78 °C for 3 h gave the corresponding adduct with 97% ee in 54% yield, along with recovery of the starting enoate in 39% yield. Based on this finding of an incomplete and slow reaction at -78 °C, the aminolithiation conditions were optimized to be at -60 °C for 15 h and subsequent enolate trap with alkyl halide upon an addition of DMPU afforded the desired aminoalkylation product with 98% ee in 89% yield. Further approach toward total synthesis of (−)-kopsinine was carried out by examining asymmetric aminolithiation with N-hydroxyethylamine equivalent, one-pot piperidine formation, and Claisen condensation.
机译:在-78℃下于甲苯中在酰胺中用酰胺锂将吲哚基丙酸酯与酰胺锂的手性二醚介导的不对称氨基甲酸酯化,在氯化铵水溶液淬灭后,以89%的收率得到相应的具有97%ee的缀合物加成产物。但是,如果选择将氯化氢的甲醇溶液用作淬灭剂,则在-78°C进行3个小时的氨基甲酰化反应,可以得到54%收率的97%ee的相应加合物,以及39%收率的起始烯酸酯的回收率。基于在-78°C下反应不完全且反应缓慢的发现,将氨基锂化条件优化为在-60°C下放置15 h,随后在添加DMPU时用烷基卤化物烯醇化捕获,从而得到所需的氨基烷基化产物(98) ee百分含量为89%。通过检查具有N-羟乙胺当量的不对称氨基锂化,一锅哌啶的形成和克莱森缩合,可以实现进一步合成(-)-kopsinine的进一步方法。

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