Department of Chemistry and Institute for Biophysical Dynamics, The University of Chicago, 929 East 57th Street, Chicago, Illinois 60637, USA.
Langmuir. 2010 Jul 20;26(14):12465-71. doi: 10.1021/la101460z.
In this paper, we describe a method to load a microfluidic device, the SlipChip, via dead-end filling. In dead-end filling, the lubricating fluid that fills the SlipChip after assembly is dissipated through the gap between the two plates of the SlipChip instead of flowing through an outlet at the end of the fluidic path. We describe a theoretical model and associated predictions of dead-end filling that takes into consideration the interfacial properties and the gap size between plates of SlipChips. In this method, filling is controlled by the balance of pressures: for filling to occur without leaking, the inlet pressure must be greater than the capillary pressure but less than the maximum sealing pressure. We evaluated our prediction with experiments, and our empirical results agreed well with theory. Internal reservoirs were designed to prevent evaporation during loading of multiple solutions. Solutions were first loaded one at a time into inlet reservoirs; by applying a single pressure source to the device, we were able to fill multiple fluidic paths simultaneously. We used this method to fill both lubricated and dry SlipChips. Dry-loaded SlipChips were fabricated from fluorinated ethylene propylene (FEP) by using hot embossing techniques, and were successfully filled and slipped to perform a simple chemical reaction. The SlipChip design was also modified to enable ease of filling by using multiple access holes to the inlet reservoir.
在本文中,我们描述了一种通过死端填充来加载微流控器件 SlipChip 的方法。在死端填充中,组装后填充 SlipChip 的润滑剂通过 SlipChip 两板之间的间隙耗散,而不是从流道末端的出口流出。我们描述了一种理论模型和相关预测,考虑了 SlipChip 板之间的界面特性和间隙大小。在这种方法中,填充由压力平衡控制:为了在不泄漏的情况下进行填充,入口压力必须大于毛细压力但小于最大密封压力。我们用实验评估了我们的预测,我们的经验结果与理论吻合得很好。内部储液器被设计用来防止在加载多个溶液时蒸发。溶液首先逐个加载到入口储液器中;通过向器件施加单个压力源,我们能够同时填充多个流道。我们使用这种方法填充了润滑和干燥的 SlipChip。干燥加载的 SlipChip 是通过热压印技术用氟化乙烯丙烯(FEP)制造的,并且成功地进行了填充和滑动,以执行简单的化学反应。还对 SlipChip 设计进行了修改,以便通过使用多个通向入口储液器的通道来方便填充。