National Creative Research Initiative Center for Integrated Optofluidic Systems, Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology, Daejeon, 305-701, Republic of Korea.
Lab Chip. 2010 Feb 21;10(4):456-61. doi: 10.1039/b915596a. Epub 2010 Jan 15.
The dynamic breakup of emulsion droplets was demonstrated in double-layered microfluidic devices equipped with designed pneumatic actuators. Uniform emulsion droplets, produced by shearing at a T-junction, were broken into smaller droplets when they passed downstream through constrictions formed by a pneumatically actuated valve in the upper control layer. The valve-assisted droplet breakup was significantly affected by the shape and layout of the control valves on the emulsion flow channel. Interestingly, by actuating the pneumatic valve immediately above the T-junction, the sizes of the emulsion droplets were controlled precisely in a programmatic manner that produced arrays of uniform emulsion droplets in various sizes and dynamic patterns.
在配备有设计气动执行器的双层微流控设备中展示了乳液液滴的动态破裂。通过在 T 型接头上的剪切作用产生的均匀乳液液滴,当它们通过在上层控制层中由气动执行器阀形成的收缩段向下游流动时,会破裂成更小的液滴。阀辅助的液滴破裂过程受到乳液流道上控制阀的形状和布局的显著影响。有趣的是,通过立即在 T 型接头上方操作气动阀,可以以编程的方式精确控制乳液液滴的大小,从而产生各种尺寸和动态模式的均匀乳液液滴阵列。