Nightingale Adrian M, Hassan Sammer-Ul, Makris Kyriacos, Bhuiyan Wahida T, Harvey Terry J, Niu Xize
Mechanical Engineering, Faculty of Engineering and Physical Sciences, University of Southampton Southampton SO17 1BJ UK
SouthWestSensor Ltd, Southampton Science Park, The Innovation Centre 2 Venture Road, Chilworth Southampton SO16 7NP UK.
RSC Adv. 2020 Aug 21;10(51):30975-30981. doi: 10.1039/d0ra05330a. eCollection 2020 Aug 17.
Maintaining a hydrophobic channel surface is critical to ensuring long-term stable flow in droplet microfluidics. Monolithic fluoropolymer chips ensure robust and reliable droplet flow as their native fluorous surfaces naturally preferentially wet fluorocarbon oils and do not deteriorate over time. Their fabrication, however, typically requires expensive heated hydraulic presses that make them inaccessible to many laboratories. Here we describe a method for micropatterning and bonding monolithic fluoropolymer flow cells from a commercially available melt-processable fluoropolymer, Dyneon THV 500GZ, that only requires a standard laboratory oven. Using this technique, we demonstrate the formation of complex microstructures, specifically the fabrication of sensitive absorbance flow cells for probing droplets in flow, featuring path lengths up to 10 mm. The native fluorous channel surface means the flow cells can be operated over extended periods, demonstrated by running droplets continuously through a chip for 16 weeks.
维持疏水通道表面对于确保微滴微流控中流体的长期稳定流动至关重要。整体式含氟聚合物芯片能确保液滴流动稳健可靠,因为其原生的氟表面天然优先润湿氟碳油,且不会随时间恶化。然而,其制造通常需要昂贵的加热液压机,这使得许多实验室无法使用。在此,我们描述了一种由市售可熔融加工的含氟聚合物Dyneon THV 500GZ制作整体式含氟聚合物流动池的微图案化和键合方法,该方法仅需一台标准实验室烘箱。利用这项技术,我们展示了复杂微结构的形成,具体而言,制造了用于探测流动中液滴的灵敏吸光度流动池,其光程长度可达10毫米。原生的氟通道表面意味着流动池可长时间运行,通过使液滴连续通过芯片16周得以证明。