Stable Formation of Aqueous/Organic Parallel Two-phase Flow in Nanochannels with Partial Surface Modification

被引:0
作者
Hiroki Sano
Yutaka Kazoe
Takehiko Kitamori
机构
[1] The University of Tokyo,Department of Applied Chemistry, School of Engineering
[2] Keio University,Department of System Design Engineering, Faculty of Science and Technology
[3] The University of Tokyo,Collaborative Research Organization for Micro and Nano Multifunctional Devices
[4] National Tsing Hua University,Institute of NanoEngineering and MicroSystems, Department of Power Mechanical Engineering
来源
Analytical Sciences | 2021年 / 37卷
关键词
Nanofluidics; nanochannel; multiphase flow; bonding; surface modification; focused ion beam; femtoliter;
D O I
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中图分类号
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摘要
In microfluidics, various chemical processes can be integrated utilizing parallel multiphase flows. Our group has extended this research to nanofluidics, and recently performed the extraction of lipids using parallel two-phase flow in nanochannels. Although this was achieved in surface-modified nanochannels, a stable condition of parallel two-phase flow remains unknown due to difficulties in device fabrication, for a suitable method of bonding surface-modified substrates is lacking. Therefore, research on parallel two-phase flow in nanochannels has been limited. Herein, a new bonding method which improves the wash process for the substrates and increases the bonding rate to ~100% is described. The conditions to achieve parallel organic/aqueous two-phase flow were then studied. It was revealed that in nanochannels, higher capillary numbers for the organic phase flow were required compared to that in microchannels. The newly developed fabrication process and flow regimes will contribute to realize integrated nanofluidic devices capable of analyzing single molecules/ cells.
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页码:1611 / 1616
页数:5
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