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在微流控芯片中连续聚焦、分段和提取阴离子分析物。

Continuous focusing, fractionation and extraction of anionic analytes in a microfluidic chip.

机构信息

BIOS Lab on a Chip group, MESA+ Institute for Nanotechnology, Max Planck Centre for Complex Fluid Dynamics and Technical Medical Centre, University of Twente, The Netherlands.

出版信息

Lab Chip. 2019 Sep 27;19(19):3238-3248. doi: 10.1039/c9lc00434c.

Abstract

Electrokinetic focusing and separation methods, specifically ion concentration polarization focusing (ICPF), provide a very powerful and easy to use analytical tool for several scientific fields. Nevertheless, the concentrated and separated analytes are effectively trapped inside the chip in picoliter volumes. In this article we propose an ICPF device that allows continuous and selective extraction of the focused analytes. A theoretical background is presented to understand the dynamics of the system and a 1D model was developed that describes the general behavior of the system. We demonstrate the selective extraction of three fluorescent model anionic analytes and we report selective extraction of the analytes at a 300-fold increased concentration.

摘要

电动聚焦和分离方法,特别是离子浓差极化聚焦 (ICPF),为多个科学领域提供了一种非常强大且易于使用的分析工具。然而,浓缩和分离的分析物实际上被有效地困在芯片内的皮升级别。在本文中,我们提出了一种 ICPF 装置,该装置允许连续和选择性地提取聚焦的分析物。提供了一个理论背景来理解系统的动力学,并开发了一个一维模型来描述系统的一般行为。我们演示了三种荧光模型阴离子分析物的选择性提取,并报告了分析物在 300 倍浓度增加时的选择性提取。

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