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借助联苯手性光学探针从旋光数据确定绝对构型

Absolute Configuration Assignment from Optical Rotation Data by Means of Biphenyl Chiroptical Probes.

作者信息

Vergura Stefania, Scafato Patrizia, Belviso Sandra, Superchi Stefano

机构信息

Department of Science, Università degli Studi della Basilicata, Via dell'Ateneo Lucano, 10, 85100, Potenza, Italy.

出版信息

Chemistry. 2019 Apr 17;25(22):5682-5690. doi: 10.1002/chem.201806435. Epub 2019 Mar 12.

Abstract

A non-empirical approach for the assignment of the absolute configuration of chiral 2-alkyl-substituted carboxylic acids and primary amines by [α] measurements has been developed. The method requires the conversion of the chiral acids or amines into the corresponding 4,4'-disubstituted biphenylamides or biphenylazepines, respectively. In these derivatives a central-to-axial chirality transfer induces a preferred torsion in the biphenyl moiety revealed by the sign of the biphenyl A band in the ECD spectrum. By 4,4'-substitution on the biphenyl moiety a redshift of the A band is obtained, leading to an increase of its relative contribution to optical rotation. This allows to reliably establish a direct correlation between the [α] sign, the biphenyl twist and, then, the substrate absolute configuration. This approach thus constitutes a really practical and reliable method to assign the absolute configuration of chiral carboxylic acids and primary amines by simple and straightforward [α] measurement, readily obtainable by a routine instrumentation like the polarimeter.

摘要

已开发出一种通过测量旋光度来确定手性2-烷基取代羧酸和伯胺绝对构型的非经验方法。该方法需要将手性酸或胺分别转化为相应的4,4'-二取代联苯酰胺或联苯氮杂䓬。在这些衍生物中,中心到轴向的手性转移会在ECD光谱中由联苯A带的符号揭示出联苯部分的优先扭转。通过对联苯部分进行4,4'-取代,可获得A带的红移,导致其对旋光的相对贡献增加。这使得能够可靠地建立旋光度符号、联苯扭转以及底物绝对构型之间的直接关联。因此,这种方法构成了一种非常实用且可靠的方法,通过简单直接的旋光度测量来确定手性羧酸和伯胺的绝对构型,使用旋光仪等常规仪器即可轻松获得该测量结果。

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