Department of Mechanical Engineering , University of Hawaii at Manoa , Honolulu , Hawaii 96822 , United States.
Langmuir. 2018 Jun 19;34(24):7042-7047. doi: 10.1021/acs.langmuir.8b01059. Epub 2018 Jun 7.
Oscillating droplets and bubbles have been developed into a novel experimental platform for a wide range of analytical and biological applications, such as digital microfluidics, thin film, biophysical simulation, and interfacial rheology. A central effort of developing any droplet-based experimental platform is to increase the effectiveness and accuracy of droplet oscillations. Here, we developed a novel system of droplet-based arbitrary waveform generator (AWG) for feedback-controlling single-droplet oscillations. This AWG was developed through closed-loop axisymmetric drop shape analysis and based on the hardware of constrained drop surfactometry. We have demonstrated the capacity of this AWG in oscillating the volume and surface area of a millimeter-sized droplet to follow four representative waveforms, sine, triangle, square, and sawtooth. The capacity of oscillating the surface area of a droplet across the frequency spectrum makes the AWG an ideal tool for studying interfacial rheology. The AWG was used to determine the surface dilational modulus of a commonly studied nonionic surfactant, dodecyldimethylphosphine oxide. The droplet-based AWG developed in this study is expected to achieve accuracy, versatility, and applicability in a wide range of research areas, such as thin film and interfacial rheology.
振荡液滴和气泡已被开发成为一种新的实验平台,可用于广泛的分析和生物学应用,例如数字微流控、薄膜、生物物理模拟和界面流变学。开发任何基于液滴的实验平台的核心工作是提高液滴振荡的有效性和准确性。在这里,我们开发了一种用于反馈控制单液滴振荡的新型基于液滴的任意波形发生器 (AWG) 系统。该 AWG 通过闭环轴对称液滴形状分析并基于约束液滴表面张力测量的硬件开发而成。我们已经证明了该 AWG 能够使毫米大小的液滴的体积和表面积以四种代表性波形(正弦波、三角波、方波和锯齿波)进行振荡。该 AWG 能够在整个频谱上振荡液滴的表面积,使其成为研究界面流变学的理想工具。该 AWG 用于确定一种常用的非离子表面活性剂十二烷基二甲基氧化膦的表面扩张模量。本研究中开发的基于液滴的 AWG 有望在广泛的研究领域(如薄膜和界面流变学)中实现准确性、多功能性和适用性。