首页> 外文期刊>The Journal of Organic Chemistry >Asymmetric Synthesis of β-Hydroxy Amino Acids via Aldol Reactions Catalyzed by Chiral Ammonium Salts
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Asymmetric Synthesis of β-Hydroxy Amino Acids via Aldol Reactions Catalyzed by Chiral Ammonium Salts

机译:手性铵盐催化醛醇缩合反应不对称合成β-羟基氨基酸

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摘要

The Cinchona alkaloid derived chiral ammonium salt developed by Park and Jew functions as an effective catalyst for the synthesis of β-hydroxy α-amino acids via asymmetric aldol reactions under homogeneous conditions. The syn diastereomers are obtained in good ee, and aryl-substituted aliphatic aldehydes are the best substrates for the reaction. These results represent the highest ee's obtained to date in direct aldol reactions of glycine equivalents catalyzed by inexpensive, readily prepared chiral ammonium salts.
机译:由Park and Jew开发的Cinchona生物碱衍生的手性铵盐可作为有效催化剂,在均相条件下通过不对称的羟醛反应合成β-羟基α-氨基酸。顺式非对映异构体的收率很好,芳基取代的脂族醛是反应的最佳底物。这些结果代表了迄今为止由廉价的,易于制备的手性铵盐催化的甘氨酸当量的直接羟醛直接醛醇缩合反应获得的最高ee。

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