Department of Electrical Engineering, University at Buffalo, The State University of New York (SUNY at Buffalo), Buffalo, New York 14260, USA.
Lab Chip. 2011 Dec 7;11(23):3956-62. doi: 10.1039/c1lc20690g. Epub 2011 Oct 12.
We present a simple method of water-in-oil droplet synchronization in a railroad-like channel network. The network consisted of a top channel, a bottom channel, and ladder-like channels interconnected between the two main channels. The presence of the pressure difference between the top and bottom channels resulted in the crossflow of carrier oil through the ladder network until the pressure in each channel was balanced automatically. The proposed model and method proved the feasibility of the parallel synchronization of two trains of droplets with up to 95% synchronization efficiency. Physical parameters that could improve the efficiency were investigated with the systematic variation of the droplet length and droplet generation frequency by controlling the flow rate in each channel. Under a subtle difference in the generation frequency, an unmatched droplet sandwiched between two matched droplets in the ladder network was switched and synchronized in turn. For perfect one-to-one droplet synchronization, the droplet length and the droplet generation frequency needed to be the same for both the top and bottom channels. In addition, one-to-multiple droplet synchronization was demonstrated by matching the product of the droplet length and the droplet generation frequency for both the top and bottom channels. The proposed method provides a simple unit operation for parallel synchronization of the trains of droplets that can be easily integrated with the conventional continuous-flow droplet-based microfluidic platform.
我们提出了一种在铁路状通道网络中实现油包水乳液滴同步的简单方法。该网络由上通道、下通道和连接两个主通道的梯状通道组成。由于上通道和下通道之间存在压力差,载液会通过梯状网络横流,直到每个通道中的压力自动达到平衡。所提出的模型和方法证明了两列乳液滴并行同步的可行性,同步效率高达 95%。通过控制每个通道中的流速,可以系统地改变乳液滴的长度和生成频率,从而研究了可以提高效率的物理参数。在生成频率的微小差异下,梯状网络中两个匹配乳液滴之间夹着的一个不匹配乳液滴会依次被切换并同步。对于完美的一对一乳液滴同步,上通道和下通道的乳液滴长度和生成频率需要相同。此外,通过匹配上通道和下通道的乳液滴长度和生成频率的乘积,可以实现一对多乳液滴同步。所提出的方法为并行同步乳液滴列车提供了一种简单的单元操作,可与传统的连续流基于乳液滴的微流控平台轻松集成。