Kendall Eric L, Wienhold Erik, Rahmanian Omid D, DeVoe Don L
Department of Mechanical Engineering, University of Maryland, College Park, Maryland 20742, USA.
Department of Materials Science and Engineering, University of Maryland, College Park, Maryland 20742, USA.
Sens Actuators B Chem. 2014 Oct 31;202:866-872. doi: 10.1016/j.snb.2014.06.023.
A unique method for incorporating functional porous polymer monolith elements into thermoplastic microfluidic chips is described. Monolith elements are formed in a microfabricated mold, rather than within the microchannels, and chemically functionalized off chip before insertion into solvent-softened thermoplastic microchannels during chip assembly. Because monoliths may be trimmed prior to final placement, control of their size, shape, and uniformity is greatly improved over photopolymerization methods. A characteristic trapezoidal profile facilitates rapid insertion and enables complete mechanical anchoring of the monolith periphery, eliminating the need for chemical attachment to the microchannel walls. Off-chip processing allows the parallel preparation of monoliths of differing compositions and surface chemistries in large batches. Multifunctional flow-through arrays of multiple monolith elements are demonstrated using this approach through the creation of a fluorescent immunosensor with integrated controls, and a microfluidic bubble separator comprising a combination of integrated hydrophobic and hydrophilic monolith elements.
本文描述了一种将功能性多孔聚合物整体元件集成到热塑性微流控芯片中的独特方法。整体元件在微制造模具中形成,而非在微通道内形成,并在芯片组装过程中插入溶剂软化的热塑性微通道之前,在芯片外进行化学功能化处理。由于整体元件在最终放置之前可以进行修整,因此与光聚合方法相比,其尺寸、形状和均匀性的控制得到了极大改善。独特的梯形轮廓便于快速插入,并能实现整体元件周边的完全机械锚固,无需化学附着于微通道壁。芯片外处理允许批量并行制备不同组成和表面化学性质的整体元件。通过创建具有集成对照的荧光免疫传感器以及包含集成疏水和亲水整体元件组合的微流控气泡分离器,展示了使用这种方法的多个整体元件的多功能流通阵列。