微通道
微尺度化学
马朗戈尼效应
表面张力
微流控
材料科学
流体力学
机械
温度梯度
流量(数学)
浮力
纳米技术
热力学
物理
量子力学
数学教育
数学
作者
Guillermo J. Amador,Ziyu Ren,Ahmet Fatih Tabak,Yunus Alapan,Öncay Yaşa,Metin Sitti
出处
期刊:Small
[Wiley]
日期:2019-04-16
卷期号:15 (21)
被引量:18
标识
DOI:10.1002/smll.201900472
摘要
Abstract Surface tension gradients induce Marangoni flow, which may be exploited for fluid transport. At the micrometer scale, these surface‐driven flows can be quite significant. By introducing fluid–fluid interfaces along the walls of microfluidic channels, bulk fluid flows driven by temperature gradients are observed. The temperature dependence of the fluid–fluid interfacial tension appears responsible for these flows. In this report, the design concept for a biocompatible microchannel capable of being powered by solar irradiation is provided. Using microscale particle image velocimetry, a bulk flow generated by apparent surface tension gradients along the walls is observed. The direction of flow relative to the imposed temperature gradient agrees with the expected surface tension gradient. The phenomenon's ability to replace bulky peripherals, like traditional syringe pumps, on a diagnostic microfluidic device that captures and detects leukocyte subpopulations within blood is demonstrated. Such microfluidic devices may be implemented for clinical assays at the point of care without the use of electricity.
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