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手性杂质(麻黄碱和伪麻黄碱)在安非他命类物质中分离的气相色谱法,使用无手性修饰剂。

Separation mechanism of chiral impurities, ephedrine and pseudoephedrine, found in amphetamine-type substances using achiral modifiers in the gas phase.

机构信息

Department of Chemistry and Biochemistry, Florida International University, Miami, FL 33199, USA.

出版信息

Anal Bioanal Chem. 2012 Nov;404(8):2407-16. doi: 10.1007/s00216-012-6365-0. Epub 2012 Sep 4.

Abstract

A new mechanism is proposed that describes the gas-phase separation of chiral molecules found in amphetamine-type substances (ATS) by the use of high-resolution ion mobility spectrometry (IMS). Straight-chain achiral alcohols of increasing carbon chain length, from methanol to n-octanol, are used as drift gas modifiers in IMS to highlight the mechanism proposed for gas-phase separations of these chiral molecules. The results suggest the possibility of using these achiral modifiers to separate the chiral molecules (R,S) and (S,R)-ephedrine and (S,S) and (R,R)-pseudoephedrine which contain an internal hydroxyl group at the first chiral center and an amino group at the other chiral center. Ionization was achieved with an electrospray source, the ions were introduced into an IMS with a resolving power of 80, and the resulting ion clusters were characterized with a coupled quadrupole mass spectrometer detector. A complementary computational study conducted at the density functional B3LYP/6-31g level of theory for the electronic structure of the analyte-modifier clusters was also performed, and showed either "bridged" or "independent" binding. The combined experimental and simulation data support the proposed mechanism for gas-phase chiral separations using achiral modifiers in the gas phase, thus enhancing the potential to conduct fast chiral separations with relative ease and efficiency.

摘要

提出了一种新的机制,用于描述使用高分辨离子淌度谱(IMS)对苯丙胺类物质(ATS)中手性分子的气相分离。使用直链手性醇作为 IMS 中的漂移气体修饰剂,其碳链长度从甲醇增加到正辛醇,以突出所提出的用于这些手性分子气相分离的机制。结果表明,有可能使用这些非手性修饰剂来分离含有第一个手性中心内部羟基和另一个手性中心氨基的手性分子(R,S)和(S,R)-麻黄碱以及(S,S)和(R,R)-伪麻黄碱。采用电喷雾源进行电离,将离子引入分辨率为 80 的 IMS 中,并使用耦合四极杆质谱检测器对得到的离子簇进行表征。还进行了在密度泛函 B3LYP/6-31g 理论水平上针对分析物-修饰剂簇的电子结构的互补计算研究,结果表明存在“桥接”或“独立”键合。实验和模拟数据的综合支持了使用气相中非手性修饰剂进行气相手性分离的建议机制,从而提高了相对轻松和高效地进行快速手性分离的潜力。

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