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首页> 外文期刊>Bulletin of the Korean Chemical Society >The Chirality Conversion Reagent for Amino Acids Based on Salicyl Aldehyde
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The Chirality Conversion Reagent for Amino Acids Based on Salicyl Aldehyde

机译:基于水杨醛的氨基酸手性转化试剂

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2-Hydroxy-6-(1-(3-phenylurylphenyl)ethoxy)-benzaldehyde (2) has been synthesized in racemic form from 1,3-Dihydroxybenzene via formylation and reaction with 3-phenyluryl-methylbenzylbromide. The optically pure form of 2 was separated by normal silica column chromatography from the imine diastreomer which was obtained by the reaction of racemic mixture of 2 with optically pure leucinol. The absolute configuration of the separated enantiomer of 2 was decided from the energy calculation of the corresponding imine diastereomers. The activity of 2 as a chirality conversion reagent (CCR) for amino acids was determined by 1H NMR analysis. The efficiency of 2 is not better than the previous CCRs based on binaththol. Compound 2, however, has lower molecular weight compared to other CCRs. This work demonstrates that asymmetric carbon can control the selectivity of amino acids.
机译:2-羟基-6-(1-(3-(苯基苯基苯基)乙氧基)乙氧基)-苯甲醛(2)是由外消旋形式由1,3-二羟基苯经甲酰化并与3-苯基氨基-甲基苄基溴反应合成的。通过常规的硅胶柱色谱法从亚胺二硬体异构体中分离出光学纯的2,亚胺二硬体通过2的外消旋混合物与光学纯的亮白酚的反应获得。由相应的亚胺非对映异构体的能量计算确定了分离的2的对映异构体的绝对构型。通过1 H NMR分析确定2作为氨基酸的手性转化试剂(CCR)的活性。 2的效率并不比以前的基于联萘酚的CCR好。但是,与其他CCR相比,化合物2的分子量较低。这项工作证明不对称碳可以控制氨基酸的选择性。

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