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窄径开口管液相色谱中的柱上和梯度聚焦诱导高分辨率分离以及一种用于皮升梯度分离的简单经济方法。

On-column and gradient focusing-induced high-resolution separation in narrow open tubular liquid chromatography and a simple and economic approach for pico-gradient separation.

作者信息

Yang Yu, Xiang Piliang, Chen Huang, Zhao Zhitao, Zhu Zaifang, Liu Shaorong

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, Norman, OK, 73019, USA.

Department of Chemistry and Biochemistry, University of Oklahoma, Norman, OK, 73019, USA; ARL Bio Pharma, Inc, Oklahoma City, OK, 73104, USA.

出版信息

Anal Chim Acta. 2019 Sep 23;1072:95-101. doi: 10.1016/j.aca.2019.04.008. Epub 2019 Apr 9.

Abstract

We have recently obtained extraordinarily high efficiencies and sharp peaks using narrow open tubular (OT) columns for liquid chromatographic separations. On-column focusing is commonly observed in liquid chromatography, but this effect alone could not satisfactorily explain the sharpness of these peaks. In this work we investigated the reasons that could have led to the peak sharpness. We hypothesized initially that analytes confined in a narrow OT column might have significantly reduced analyte diffusivities and the reduced diffusivities consequently resulted in the peak sharpness. This hypothesis was invalidated immediately after we measured the diffusion coefficients and did not notice any noticeable diffusivity increases of the analytes inside such columns. We then designed an experiment and revealed a "re-focusing effect". Investigation of this re-focusing effect eventually led us to the observation of a gradient focusing caused by the composition difference between the eluent and the sample matrix. It was this gradient focusing that had contributed primarily to the peak sharpness. On the basis of this insightful understanding, we further developed a simple and economic approach to perform pico-gradient narrow open tubular liquid chromatographic separations.

摘要

最近,我们在使用窄径开口管(OT)柱进行液相色谱分离时获得了极高的分离效率和尖锐的峰形。柱上聚焦现象在液相色谱中较为常见,但仅靠这一效应无法充分解释这些峰的尖锐程度。在这项工作中,我们研究了导致峰尖锐的原因。我们最初假设,被限制在窄径OT柱中的分析物可能具有显著降低的扩散系数,而扩散系数的降低导致了峰的尖锐度。在我们测量扩散系数后,这一假设立即被推翻,因为我们没有注意到此类柱内分析物的扩散系数有任何明显增加。然后我们设计了一个实验,并揭示了一种“重新聚焦效应”。对这种重新聚焦效应的研究最终使我们观察到了由洗脱液和样品基质之间的成分差异引起的梯度聚焦。正是这种梯度聚焦主要促成了峰的尖锐度。基于这一深刻的理解,我们进一步开发了一种简单且经济的方法来进行皮克级梯度窄径开口管液相色谱分离。

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