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全二维气相色谱-质谱联用技术:综述

Comprehensive two-dimensional gas chromatography-mass spectrometry: a review.

作者信息

Mondello Luigi, Tranchida Peter Quinto, Dugo Paola, Dugo Giovanni

机构信息

Dipartimento Farmaco-chimico, Facoltà di Farmacia, Università di Messina, viale Annunziata, 98168 Messina, Italy.

出版信息

Mass Spectrom Rev. 2008 Mar-Apr;27(2):101-24. doi: 10.1002/mas.20158.

Abstract

Although comprehensive two-dimensional gas chromatography (GC x GC) has been on the scene for more than 15 years, it is still generally considered a relatively novel technique and is yet far from being fully established. The revolutionary aspect of GC x GC, with respect to classical multidimensional chromatography, is that the entire sample is subjected to two distinct analytical separations. The resulting enhanced separating capacity makes this approach a prime choice when GC analysts are challenged with highly complex mixtures. The combination of a third mass spectrometric dimension to a GC x GC system generates the most powerful analytical tool today for volatile and semi-volatile analytes. The present review is focused on the rather brief, but not scant, history of comprehensive two-dimensional GC-MS: the first experiments were carried out at the end of the 1990s and, since then, the methodology has been increasingly studied and applied. Almost all GC x GC-MS applications have been carried out by using either a time-of-flight or quadrupole mass analyzer; significant experiments relative to a variety of research fields, as well as advantages and disadvantages of the MS systems employed, are discussed. The principles, practical and theoretical aspects, and the most significant developments of GC x GC are also described.

摘要

尽管全二维气相色谱(GC×GC)已出现超过15年,但它仍普遍被视为一种相对新颖的技术,且远未完全确立。与传统多维色谱相比,GC×GC的革命性在于整个样品要经历两种不同的分析分离。由此增强的分离能力使这种方法成为气相色谱分析人员面对高度复杂混合物时的首选。在GC×GC系统中加入第三个质谱维度,就产生了当今用于挥发性和半挥发性分析物的最强大分析工具。本综述聚焦于全二维气相色谱 - 质谱(GC×GC - MS)相当简短但并非稀少的历史:首次实验在20世纪90年代末进行,从那时起,该方法得到了越来越多的研究和应用。几乎所有GC×GC - MS应用都是使用飞行时间或四极杆质谱分析仪进行的;讨论了相对于各种研究领域的重要实验以及所采用质谱系统的优缺点。还描述了GC×GC的原理、实际和理论方面以及最重要的进展。

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