Title: | Rapid Prototyping of an Open-Surface Microfluidic Platform Using Wettability-Patterned Surfaces Prepared by an Atmospheric-Pressure Plasma Jet |
Authors: | Wu, She-Ting Huang, Chen-Yu Weng, Chih-Chiang Chang, Chia-Chih Li, Bor-Ran Hsu, Chain-Shu 交大名義發表 分子醫學與生物工程研究所 應用化學系 National Chiao Tung University Institute of Molecular Medicine and Bioengineering Department of Applied Chemistry |
Issue Date: | 8-Oct-2019 |
Abstract: | Open-surface microfluidics is promising in terms of enabling economical and rapid biochemical analysis for addressing challenges associated with medical diagnosis and food safety. To this end, we present a simple and economical approach to develop an open-surface microfluidic platform suitable for facile liquid transport and mixing. Customizable patterns with tailored wettability are deposited using a plasma-assisted deposition technique under atmospheric pressure. The flow of the dispensed liquid is driven by gravity, and the tilting angle of the device determines the extent of mixing. First, a hexamethyldisiloxane film was deposited to create hydrophobic patterns on glass, and then, hydrophilic acrylic acid was deposited by a patterned cardboard mask to construct a channel suitable for forming channels to transport aqueous liquids without the need of an external energy input; the liquid can be confined to designated pathways. Several designs including Y-junctions, serpentine-shaped patterns, splitting channels, and concentration gradient generation patterns are presented. The proposed method can spatially pattern a surface with a hydrophobic/hydrophilic area, which can function as a microfluidic channel, and the surface can be applied in microfluidic devices with other types of substrates. |
URI: | http://dx.doi.org/10.1021/acsomega.9b01317 http://hdl.handle.net/11536/153022 |
ISSN: | 2470-1343 |
DOI: | 10.1021/acsomega.9b01317 |
Journal: | ACS OMEGA |
Volume: | 4 |
Issue: | 15 |
Begin Page: | 16292 |
End Page: | 16299 |
Appears in Collections: | Articles |