Singapore-MIT Alliance, Singapore.
Lab Chip. 2010 Sep 21;10(18):2458-63. doi: 10.1039/c004853d. Epub 2010 Aug 10.
We present a new and general scheme for analytical applications of droplet-based microfluidics in which flowing droplets function not only as isolated reaction flasks, but are also capable of on-drop separation and sensing. To demonstrate this, we choose ionic liquids as designer fluids whose chemical and physical properties can be tailored in task-specific fashion. We create aqueous-ionic liquid compound droplets with tunable structures using an imidazolium-based ionic liquid, and present two analytical applications-separation of a binary aqueous mixture of organic dyes and dynamic pH sensing-to highlight the salient features of this scheme. By combining designer fluids with designer microfluidic emulsions, our work opens up a rich space of exploration for analytical microfluidics.
我们提出了一种新的通用方案,用于基于液滴的微流控在分析中的应用,其中流动液滴不仅可以作为隔离的反应瓶,而且还能够实现液滴内的分离和传感。为了证明这一点,我们选择离子液体作为设计流体,其化学和物理性质可以根据特定任务进行定制。我们使用基于咪唑的离子液体创建了具有可调结构的水-离子液体复合液滴,并展示了两个分析应用,即二元有机染料水溶液的分离和动态 pH 传感,以突出该方案的显著特点。通过将设计流体与设计微流控乳液相结合,我们的工作为分析微流控开辟了广阔的探索空间。