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Enantioselective Synthesis of Succinimides by Michael Addition of Aldehydes to Maleimides Organocatalyzed by Chiral Primary Amine-Guanidines

机译:手性伯胺-胍类有机催化的马来酰亚胺的迈克尔加成反应使醛加成对映体,合成琥珀酰亚胺

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摘要

The monoguanylation of (1S,2S)- and (1R,2R)-cyclohexane-1,2-diamine affords chiral primary amine-guanidines that are used as chiral organocatalysts in the enantioselective Michael addition of aldehydes, particularly α,α-disubstituted aldehydes, to maleimides. The reaction is carried out in the presence of imidazole, as an additive, in aqueous N,N-dimethylformamide, as the solvent, and affords the corresponding enantioenriched succinimides in high or quantitative yields with enantioselectivities up to 96 % ee. Theoretical calculations (DFT and M06–2X) suggest a different hydrogen-bonding coordination pattern between the maleimide (C=O) and the catalyst (NH groups) is responsible for the enantioinduction switch that is observed when the reaction is carried out using primary amine-guanidines versus primary amine-thioureas as the organocatalysts.
机译:(1S,2S)-和(1R,2R)-环己烷-1,2-二胺的单胍基化作用可提供手性伯胺-胍,该手性伯醛用于手性有机催化剂中醛,特别是α,α-二取代醛的对映选择性迈克尔加成反应,以马来酰亚胺。反应在咪唑作为添加剂存在下,在N,N-二甲基甲酰胺水溶液中作为溶剂进行,以高或定量收率得到对应的对映体富集的琥珀酰亚胺,对映体选择性高达96 ^%ee。理论计算(DFT和M06-2X)表明,马来酰亚胺(C = O)与催化剂(NH基团)之间存在不同的氢键配位模式,这是对映体诱导转换的原因,当使用伯胺进行反应时会观察到-胍与伯胺-硫脲作为有机催化剂。

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