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全面多维液相色谱系统的方法。

Approaches to comprehensive multidimensional liquid chromatography systems.

作者信息

Fairchild Jacob N, Horváth Krisztián, Guiochon Georges

机构信息

Department of Chemistry, University of Tennessee, Knoxville, TN 37996-1600, USA.

出版信息

J Chromatogr A. 2009 Feb 27;1216(9):1363-71. doi: 10.1016/j.chroma.2008.12.073. Epub 2008 Dec 30.

Abstract

This work compares the performance of the three different schemes implementing two-dimensional liquid chromatography (2D-LC) in terms of the peak capacity that they can generate and of the time that they need to complete a two-dimensional analysis. We discuss in detail how time is spent in these two-dimensional liquid chromatography x liquid chromatography (LC x LC) schemes and how to compare them. Keeping constant the characteristics of the first-dimension separation, we systematically varied those of the second-dimension separation and of its coupling to the first-dimension. In the process, five systems were created, based on the principles of the three known implementations of comprehensive 2D-LC. This work demonstrates an original method for the selection of the best comprehensive 2D-LC approach, depending on the desired peak capacity and on time constraints. The decision to use a 2D-LC method arises from the need to achieve a given resolution (i.e., a target peak capacity) within as short a time as possible or to reach the highest possible resolution in a given analysis time. Using the most appropriate schemes, we suggest how it is realistically possible to generate peak capacities ranging from 266 in just over 20 min or about 2800 in 2.3 h. When the time available for a two-dimensional separation is very short and the desired peak capacity cannot be achieved in 1D-LC, an on-line 2D-LC approach is unquestionably best. However, if a longer analysis time is acceptable, a 10-fold increase in the peak capacity can be obtained at the cost of a mere 7-fold increase in total analysis time.

摘要

这项工作比较了三种不同的二维液相色谱(2D-LC)实施方案在所能产生的峰容量以及完成二维分析所需时间方面的性能。我们详细讨论了在这些二维液相色谱×液相色谱(LC×LC)方案中时间是如何消耗的以及如何对它们进行比较。在保持一维分离特性不变的情况下,我们系统地改变了二维分离及其与一维分离耦合的特性。在此过程中,基于全面二维液相色谱的三种已知实施方案的原理创建了五个系统。这项工作展示了一种根据所需峰容量和时间限制来选择最佳全面二维液相色谱方法的原创方法。决定使用二维液相色谱方法是出于在尽可能短的时间内实现给定分辨率(即目标峰容量)或在给定分析时间内达到尽可能高分辨率的需要。使用最合适的方案,我们表明实际上有可能在略多于20分钟内产生266的峰容量,或在2.3小时内产生约2800的峰容量。当二维分离可用时间非常短且在一维液相色谱中无法实现所需峰容量时,在线二维液相色谱方法无疑是最佳选择。然而,如果可以接受更长的分析时间,那么以总分析时间仅增加7倍为代价,峰容量可提高10倍。

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