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通过质量分辨激光光谱法进行手性识别。

Chiral recognition by mass-resolved laser spectroscopy.

作者信息

Speranza Maurizio, Satta Mauro, Piccirillo Susanna, Rondino Flaminia, Paladini Alessandra, Giardini Anna, Filippi Antonello, Catone Daniele

机构信息

Facoltà di Farmacia, Dipartimento di Studi di Chimica e Tecnologia delle Sostanze Biologicamente Attive, Università di Roma La Sapienza, pl. A. Moro 5, I-00185 Roma, Italy.

出版信息

Mass Spectrom Rev. 2005 Jul-Aug;24(4):588-610. doi: 10.1002/mas.20040.

Abstract

Chiral recognition is a fundamental phenomenon in life sciences, based on the enantioselective complexation of a chiral molecule with a chiral selector. The diastereomeric aggregates, formed by complexation, are held together by a different combination of intermolecular forces and are therefore endowed with different stability and reactivity. Determination of these forces, which are normally affected in the condensed phase by solvent and supramolecular interactions, requires the generation of the diastereomeric complexes in the isolated state and their spectroscopic investigation. This review deals with chiral recognition in the gas phase through the application of laser-resolved mass spectrometric techniques (R2PI-TOF and RET-MS). The measurement of the fragmentation thresholds of diastereomeric clusters by these techniques allows the determination of the nature of the intrinsic interactions, which control their formation and affect their stability and reactivity.

摘要

手性识别是生命科学中的一种基本现象,它基于手性分子与手性选择剂的对映选择性络合。通过络合形成的非对映异构体聚集体,由不同组合的分子间作用力维系在一起,因此具有不同的稳定性和反应活性。这些作用力通常在凝聚相中会受到溶剂和超分子相互作用的影响,要确定这些作用力,需要在孤立状态下生成非对映异构体络合物并对其进行光谱研究。本综述通过应用激光解析质谱技术(R2PI-TOF和RET-MS)来探讨气相中的手性识别。利用这些技术测量非对映异构体簇的裂解阈值,能够确定控制其形成、影响其稳定性和反应活性的内在相互作用的性质。

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