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NMR spectroscopic detection of chirality and enantiopurity in referenced systems without formation of diastereomers

机译:核磁共振波谱法检测参考体系中的手性和对映体纯度而不会形成非对映异构体

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摘要

Enantiomeric excess of chiral compounds is a key parameter that determines their activity or therapeutic action. The current paradigm for rapid measurement of enantiomeric excess using NMR is based on the formation of diastereomeric complexes between the chiral analyte and a chiral resolving agent, leading to (at least) two species with no symmetry relationship. Here we report an effective method of enantiomeric excess determination using a symmetrical achiral molecule as the resolving agent, which is based on the complexation with analyte (in the fast exchange regime) without the formation of diastereomers. The use of N,N′-disubstituted oxoporphyrinogen as the resolving agent makes this novel method extremely versatile, and appropriate for various chiral analytes including carboxylic acids, esters, alcohols and protected amino acids using the same achiral molecule. The model of sensing mechanism exhibits a fundamental linear response between enantiomeric excess and the observed magnitude of induced chemical shift non-equivalence in the 1H NMR spectra.
机译:手性化合物的对映体过量是决定其活性或治疗作用的关键参数。当前使用NMR快速测量对映体过量的范例是基于手性分析物和手性拆分剂之间非对映体复合物的形成,导致(至少)两种不具有对称关系的物质。在这里,我们报告使用对称的非手性分子作为拆分剂的对映体过量测定的有效方法,该方法基于与分析物的络合(在快速交换体系中)而不会形成非对映异构体。使用N,N'-二取代的氧卟啉原作为拆分剂,使该新方法极为通用,适用于使用同一非手性分子的各种手性分析物,包括羧酸,酯,醇和受保护的氨基酸。感应机理模型在 1 H NMR光谱中显示出对映体过量与观察到的诱导化学位移不等价之间的基本线性响应。

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