Department of Medical Sciences, Graduate School of Medicine, Korea University, Seoul, Korea.
Department of Laboratory Medicine, College of Medicine, Korea University Guro Hospital, Korea University, Seoul, Korea.
Lab Chip. 2020 Jan 7;20(1):120-125. doi: 10.1039/c9lc00820a. Epub 2019 Nov 14.
The use of an open droplet system for surface acoustic wave (SAW)-based applications has been limited by droplet instability at high input power. This study introduces a dome-shaped chamber-based SAW (DC-SAW) device for the first time, which can be fabricated simply using a single adhesive tape and a drop of ultraviolet-curable material without soft lithography processes. The dome-shaped chamber device with a contact angle of 68° enables the maximizing of the effect of SAW transmitted at a refraction angle of roughly 22°, negating the droplet instability. The DC-SAW device was applied to acoustic mixing to estimate its capability. Acoustic mixing of two different fluids (i.e., deionized water and fluorescent particle suspension) was demonstrated in the dome-shaped chamber device. Moreover, the effect of flow rate and applied voltage on mixing performance was estimated. With the decreasing flow rate and increasing applied voltage, mixing performance was enhanced. At an applied voltage of 20 V, mixing indices were higher than 0.9 at a total flow rate of 300 μl min.
用于表面声波(SAW)应用的开式液滴系统的使用受到高输入功率下液滴不稳定性的限制。本研究首次介绍了一种基于圆顶腔的 SAW(DC-SAW)器件,该器件可通过简单地使用单个胶带和一滴紫外光固化材料制造,而无需软光刻工艺。具有 68°接触角的圆顶腔器件可最大程度地增强大约 22°折射角处传输的 SAW 的效果,从而消除液滴不稳定性。将 DC-SAW 器件应用于声混合以评估其性能。在圆顶腔器件中演示了两种不同流体(即去离子水和荧光颗粒悬浮液)的声混合。此外,还评估了流速和外加电压对混合性能的影响。随着流速的降低和外加电压的增加,混合性能得到了提高。在外加电压为 20 V 时,在总流速为 300 μl min 的情况下,混合指数高于 0.9。