Development of an Automated Sample Injection System for Pillar Array Columns

H. Kuroki, Hirotaka Koyama, Yusuke Nakatani, T. Funatsu, S. Horiike, M. Tsunoda
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引用次数: 3

Abstract

A pillar array column with a perfectly ordered internal structure has a higher separation efficiency than a particle-packed column used in conventional high-performance liquid chromatography. However, applying the pillar array column technology to quantitative analysis is challenging as the injection volume of the sample varies for each injection. This occures because the sample volumes are in the order of nanoliters and the sample is injected manually. In this study, an automated sample injection system was developed to solve this problem. The system was composed of two pumps (one for the sample and other for the mobile phase), a six-way valve that can be controlled by a PC, and an autosampler. The peak height deviation, which is more than 20% in the conventional manual injection system, was improved to 1.2% and 0.4% for the two coumarin dye samples. This result indicated that the automated sample injection method developed in this study could be applied to pillar array columns to allow for quantitative analysis.
柱阵列柱自动进样系统的研制
与传统高效液相色谱中使用的颗粒填充柱相比,具有完美有序内部结构的柱阵列柱具有更高的分离效率。然而,由于每次进样的进样量不同,将柱阵列柱技术应用于定量分析具有挑战性。这是因为样品体积在纳升数量级,并且样品是手动注入的。在本研究中,开发了一种自动进样系统来解决这一问题。该系统由两个泵组成(一个用于样品,另一个用于流动相),一个可以由PC控制的六通阀和一个自动进样器。两种香豆素染料样品的峰高偏差分别为1.2%和0.4%,而传统的手动进样系统的峰高偏差大于20%。该结果表明,本研究建立的自动进样方法可用于柱阵列柱的定量分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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