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Gas-Phase Chiral Separations by Ion Mobility Spectrometry

机译:离子迁移谱法进行气相手性分离

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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 alpha-glucopyranoside, glucose, penicillamine, valinol, phenylalanine, and tryptophan from their respective racemic mixtures.
机译:本文介绍了手性离子迁移谱(CIMS)的概念,并提供了一些示例,这些示例演示了气相分离包括药物,氨基酸和碳水化合物在内的各种外消旋体的对映异构体。 CIMS与传统的离子迁移谱法相似,在传统的离子迁移谱法中,气相离子在受到电势梯度作用时会由于其形状和大小的差异而在大气压下分离。除了大小和形状以外,CIMS还根据离子与手性气体的立体特异性相互作用来分离离子。为了通过CIMS实现手性鉴别,通过用挥发性手性试剂掺杂漂移气体来提供不对称环境。在这项研究中,(S)-(+)-2-丁醇用作手性改性剂,以证明阿替洛尔,丝氨酸,蛋氨酸,苏氨酸,甲基α-吡喃葡萄糖苷,葡萄糖,青霉胺,缬氨醇,苯丙氨酸和色氨酸的对映体分离各自的外消旋混合物。

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