Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, P.O. Box 2008, MS-6493, Oak Ridge, Tennessee 37831, USA.
Lab Chip. 2010 Oct 21;10(20):2688-94. doi: 10.1039/c0lc00120a. Epub 2010 Aug 19.
We describe a method for creating discrete femtolitre-scale water-in-oil droplets on demand, based solely on a geometrically induced reduction in oil/water interfacial area at microfabricated junction orifices. This on-demand generation method is driven by self-shear of droplets due to interfacial tension induced forces resulting from a localized transition in microchannel height. The magnitudes of shear stresses involved appear to be significantly less than the shearing instabilities used to split off daughter droplets from aqueous mother plugs at microfabricated junctions in continuous water-in-oil segmented flows, which implies that this method may be better suited for studying biochemical reactions and reaction kinetics in droplets of decreased volume without loss of chemical reactivity due to redistribution of surfactant density used to passivate the oil/water interface. Predictable droplet generation rates under constant pressure conditions or the gated formation of one, two or more droplets at a time with fixed pressure pulses have been demonstrated in a similar manner to active on-demand droplet generation strategies, but with a simpler system not needing actuation and sensing equipment beyond a pressure regulator.
我们描述了一种按需生成离散皮升级油包水液滴的方法,该方法仅基于微加工连接口处几何诱导的油/水界面面积减小。这种按需生成方法由液滴的自剪切驱动,这是由于微通道高度的局部变化引起的界面张力诱导力所致。所涉及的剪切应力的大小似乎明显小于用于在连续水包油分段流中从微加工连接口处的水性母塞中分裂出子液滴的剪切不稳定性,这意味着该方法可能更适合于研究生化反应和反应动力学在体积减小的液滴中,而不会由于用于钝化油/水界面的表面活性剂密度的再分配而导致化学反应性丧失。在恒压条件下可预测的液滴生成速率,或使用固定压力脉冲一次形成一个、两个或更多个液滴的门控形成,已经以类似于主动按需液滴生成策略的方式得到证明,但系统更简单,不需要除压力调节器之外的致动和感测设备。