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通过水相仿生识别实现有机分子手性光学传感的绿色广阔方法。

A Green and Wide-Scope Approach for Chiroptical Sensing of Organic Molecules through Biomimetic Recognition in Water.

机构信息

Shenzhen Grubbs Institute, Guangdong Provincial Key Laboratory of Catalysis, Department of Chemistry, Southern University of Science and Technology, Xueyuan Blvd 1088, Shenzhen, 518055, China.

出版信息

Angew Chem Int Ed Engl. 2020 Dec 21;59(52):23817-23824. doi: 10.1002/anie.202011566. Epub 2020 Oct 15.

Abstract

Optical chirality sensing has attracted a lot of interest due to its potential in high-throughput screening in chirality analysis. A molecular sensor is required to convert the chirality of analytes into optical signals. Although many molecular sensors have been reported, sensors with wide substrate scope remain to be developed. Herein, we report that the amide naphthotube-based chirality sensors have an unprecedented wide scope for chiroptical sensing of organic molecules. The substrates include, but are not limited to common organic products in asymmetric catalysis, chiral molecules with inert groups or remote functional groups from their chiral centers, natural products and their derivatives, and chiral drugs. The effective chirality sensing is based on biomimetic recognition in water and on effective chirality transfer through guest-induced formation of a chiral conformation of the sensors. Furthermore, the sensors can be used in real-time monitoring on reaction kinetics in water and in determining absolute configurations and ee values of the products in asymmetric catalysis.

摘要

光学手性传感因其在手性分析中的高通量筛选潜力而引起了广泛关注。需要分子传感器将分析物的手性转换为光学信号。尽管已经报道了许多分子传感器,但具有广泛底物范围的传感器仍有待开发。在此,我们报告酰胺萘管基手性传感器在手性有机分子的手性光学传感方面具有前所未有的广泛范围。底物包括但不限于不对称催化中的常见有机产物、具有惰性基团或与其手性中心的远程官能团的手性分子、天然产物及其衍生物以及手性药物。有效的手性传感基于在水中的仿生识别以及通过客体诱导传感器形成手性构象来有效传递手性。此外,这些传感器可用于实时监测水中的反应动力学,并在手性催化中确定产物的绝对构型和 ee 值。

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