Department of Chemistry, Georgetown University, Washington, DC, USA.
Chem Commun (Camb). 2019 May 28;55(44):6297-6300. doi: 10.1039/c9cc02525a.
Optical chirality sensing of unprotected amino acids, hydroxy acids, amino alcohols, amines and carboxylic acids based on a practical mix-and-measure protocol with readily available copper, iron, palladium, manganese, cerium or rhodium salts is demonstrated. The generation of strong cotton effects allows quantitative ee analysis of small sample amounts with high speed. In contrast to previously reported assays the use of chromophoric reporter ligands and the control of metal coordination kinetics and redox chemistry are not necessary which greatly simplifies the sensing procedure with the benefit of reduced waste production and cost.
基于一种实用的混合测量方案,展示了对未保护的氨基酸、羟基酸、氨基酸醇、胺和羧酸的光学手性传感,该方案使用易得的铜、铁、钯、锰、铈或铑盐。强的Cotton 效应的产生允许对小样品量进行高速定量 ee 分析。与以前报道的测定方法相比,不需要使用发色报告配体以及控制金属配位动力学和氧化还原化学,这大大简化了传感过程,减少了废物产生和成本。