BIOS-Lab on a Chip Group, MESA+ Institute of Nanotechnology, Technical Medical Centre, Max Planck Center for Complex Fluid Dynamics, University of Twente, The Netherlands.
Lab Chip. 2020 Jun 21;20(12):2209-2217. doi: 10.1039/d0lc00191k. Epub 2020 May 20.
Lab-on-chip electrokinetic focusing and separation techniques are widely used in several scientific fields. In a number of cases, these techniques have been combined with a selective analyte extraction for off-chip analysis. Nevertheless, the usability of the extracts is limited by diffusion which reduces the separation resolution. In this paper we propose the integration of a droplet generator capable of continuous or on-demand generation and extraction of electrokinetically separated and focused analytes. We demonstrate the selective droplet extraction of model analytes separated and concentrated via ion concentration polarization focusing (ICPF). We report extracted droplets with 1000-fold increased concentration. Importantly, the droplet generator does not interrupt the ICPF process making it suitable for integration with the majority of electrokinetic separation techniques.
芯片实验室电动聚焦和分离技术在多个科学领域得到了广泛应用。在许多情况下,这些技术已经与选择性分析物提取相结合,用于离机分析。然而,提取物的可用性受到扩散的限制,扩散会降低分离分辨率。在本文中,我们提出了集成一种能够连续或按需生成和提取电动分离和聚焦分析物的液滴发生器。我们通过离子浓度极化聚焦(ICPF)证明了模型分析物的选择性液滴提取。我们报告了浓缩和分离后的提取液滴的浓度增加了 1000 倍。重要的是,液滴发生器不会中断 ICPF 过程,使其适合与大多数电动分离技术集成。