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温度脉冲控制毛细管液相色谱中的色谱分辨率。

Temperature pulsing for controlling chromatographic resolution in capillary liquid chromatography.

机构信息

Australian Centre for Research on Separation Science, School of Chemistry, University of Tasmania, Private Bag 75, Hobart, Tasmania, Australia, 7001.

出版信息

Anal Chem. 2012 Apr 3;84(7):3362-8. doi: 10.1021/ac300161b. Epub 2012 Mar 19.

Abstract

In this study we introduce the implementation of rapid temperature pulses for selectivity tuning in capillary liquid chromatography. Short temperature pulses improved resolution in discrete sections of chromatograms, demonstrated for ion-exchange chromatography (IC) and hydrophilic interaction chromatography (HILIC) modes. Using a resistively heated column module capable of accurate and rapid temperature changes, this concept is first illustrated with separations of small anions by IC using a packed capillary column as well as a series of nucleobases and nucleosides by HILIC using a silica monolithic column with zwitterionic functionality (ZIC-HILIC). Both positive (increasing temperature) and negative temperature pulses are demonstrated to produce significant changes in selectivity and are useful approaches for improving resolution between coeluted compounds. The approach was shown to be reproducible over a large number of replicates. Finally, the use of temperature gradients as well as other complex temperature profiles was also examined for both IC and HILIC separations.

摘要

在这项研究中,我们介绍了在毛细管液相色谱中实现快速温度脉冲以进行选择性调谐的方法。短时间的温度脉冲可改善色谱图离散部分的分辨率,在离子交换色谱(IC)和亲水相互作用色谱(HILIC)模式下均得到了证明。使用能够实现准确和快速温度变化的电阻加热柱模块,首先通过使用填充毛细管柱的 IC 分离以及使用带有两性离子功能(ZIC-HILIC)的硅胶整体柱的 HILIC 分离来展示该概念,对一系列核苷碱基和核苷进行了说明。正(升高温度)和负温度脉冲都被证明可以显著改变选择性,并且是改善共洗脱化合物之间分辨率的有用方法。该方法在大量重复实验中表现出可重复性。最后,还研究了用于 IC 和 HILIC 分离的温度梯度以及其他复杂温度曲线。

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