化学
对映体
离子迁移光谱法
手性衍生剂
质谱法
离子
试剂
氨基酸
立体专一性
对映体过量
色谱法
对映选择合成
手性柱色谱法
有机化学
催化作用
生物化学
作者
Prabha Dwivedi,Ching‐Yi Wu,Laura M. Matz,Brian H. Clowers,William F. Siems,Herbert H. Hill
摘要
This article introduces the concept of chiral ion mobility spectrometry (CIMS) and presents examples demonstrating the gas-phase separation of enantiomers of a wide range of racemates including pharmaceuticals, amino acids, and carbohydrates. CIMS is similar to traditional ion mobility spectrometry, where gas-phase ions, when subjected to a potential gradient, are separated at atmospheric pressure due to differences in their shapes and sizes. In addition to size and shape, CIMS separates ions based on their stereospecific interaction with a chiral gas. In order to achieve chiral discrimination by CIMS, an asymmetric environment was provided by doping the drift gas with a volatile chiral reagent. In this study (S)-(+)-2-butanol was used as a chiral modifier to demonstrate enantiomeric separations of atenolol, serine, methionine, threonine, methyl α-glucopyranoside, glucose, penicillamine, valinol, phenylalanine, and tryptophan from their respective racemic mixtures.
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