Mechanical Engineering Department, Bilkent University, Ankara, 06800, Turkey.
UNAM (National Nanotechnology Research Center), Ankara, 06800, Turkey.
Sci Rep. 2018 Jan 25;8(1):1606. doi: 10.1038/s41598-018-19966-y.
The ability to produce a controlled sequence of alternating droplets from two separate sources inside a microfluidic system brings several advantages in microfluidic analysis. The effectiveness of this technique for use in an application depends on the ability of the device to replicate the pattern continuously and accurately. In this work we studied the effect of the dispersed phase channel geometry on generating a repeating pattern of alternating droplets in a cross junction microfluidic device. By measuring the radius of curvature of a droplet at the time of break up, and calculating the Laplace pressure using these values, we analyzed how the angle of taper of the dispersed phase inlet channel has an influence on the pattern repetition and uniformity of formed droplet size and spacing in between. The performance of devices with different angle of taper values were studied experimentally. This comparative study indicated that the ability of a cross junction device to generate alternating droplets with uniform size and spacing is highly dependent on the angle of taper of the inlet channels; and it improves with larger taper angles.
在微流控系统中从两个独立的源产生受控的交替液滴序列的能力在微流控分析中带来了几个优势。该技术在应用中的有效性取决于设备连续且准确复制图案的能力。在这项工作中,我们研究了分散相通道几何形状对在十字形微流控装置中产生重复交替液滴图案的影响。通过测量断开时液滴的曲率半径,并使用这些值计算拉普拉斯压力,我们分析了分散相入口通道的锥角如何影响图案重复以及形成的液滴尺寸和间隔之间的均匀性。实验研究了具有不同锥角值的器件的性能。这项比较研究表明,十字形器件生成具有均匀尺寸和间隔的交替液滴的能力高度依赖于入口通道的锥角;并且随着锥角的增大而提高。