Laboratoire d'Hydrodynamique (LadHyX) and Department of Mechanics, Ecole Polytechnique, CNRS, 91128, Palaiseau, France.
Lab Chip. 2011 Dec 21;11(24):4228-34. doi: 10.1039/c1lc20541b. Epub 2011 Nov 1.
We demonstrate the combination of a rails and anchors microfluidic system with laser forcing to enable the creation of highly controllable 2D droplet arrays. Water droplets residing in an oil phase can be pinned to anchor holes made in the base of a microfluidic channel, enabling the creation of arrays by the appropriate patterning of such holes. The introduction of laser forcing, via laser induced thermocapillary forces to anchored droplets, enables the selective extraction of particular droplets from an array. We also demonstrate that such anchor arrays can be filled with multiple, in our case two, droplets each and that if such droplets have different chemical contents, the application of a laser at their interface triggers their merging and a chemical reaction to take place. Finally by adding guiding rails within the microfluidic structure we can selectively fill large scale arrays with monodisperse droplets with significant control over their contents. In this way we make a droplet array filled with 96 droplets containing different concentrations of fluorescent microparticles.
我们展示了一种轨道和锚定微流控系统与激光力的结合,从而能够创建高度可控的 2D 液滴阵列。驻留在油相中的水滴可以被固定在微流道底部的锚定孔中,通过适当的孔图案化来创建阵列。通过激光诱导热毛细力对锚定液滴施加激光力,可以从阵列中选择性地提取特定的液滴。我们还证明,这样的锚定阵列可以填充多个,在我们的情况下是两个,每个液滴,如果这些液滴具有不同的化学内容,在它们的界面处施加激光会触发它们的合并和化学反应的发生。最后,通过在微流控结构中添加导轨,我们可以有选择地用具有显著内容控制的单分散液滴填充大规模阵列。通过这种方式,我们制作了一个充满 96 个液滴的液滴阵列,每个液滴都含有不同浓度的荧光微球。