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Temperature Gradients Drive Bulk Flow Within Microchannel Lined by Fluid-Fluid Interfaces

机译:温度梯度在流体流体界面内衬微通道内的散装散装流量

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摘要

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.
机译:表面张力梯度诱导Marangoni流,这可能被利用以进行流体运输。在千分尺刻度下,这些表面驱动的流量可能非常显着。通过沿着微流体通道壁引入流体 - 流体界面,观察由温度梯度驱动的大量流体流动。流体流体界面张力的温度依赖性似乎对这些流动负责。在本报告中,提供了能够由太阳照射供电的生物相容性微通道的设计概念。使用微观粒子图像测速基,观察到由沿着壁的表观表面张力梯度产生的体积流动。相对于施加的温度梯度的流动方向与预期的表面张力梯度同意。证实了在捕获和检测血液中捕获和检测白细胞亚流体的诊断微流体装置上替代庞大的外围设备的能力,如传统的注射器泵。这种微流体装置可以用于在不使用电力的情况下在护理点处实现临床测定。

著录项

  • 来源
    《Small》 |2019年第21期|共8页
  • 作者单位

    Physical Intelligence Department Max Planck Institute for Intelligent Systems Stuttgart 70569 Germany;

    Physical Intelligence Department Max Planck Institute for Intelligent Systems Stuttgart 70569 Germany;

    Physical Intelligence Department Max Planck Institute for Intelligent Systems Stuttgart 70569 Germany;

    Physical Intelligence Department Max Planck Institute for Intelligent Systems Stuttgart 70569 Germany;

    Physical Intelligence Department Max Planck Institute for Intelligent Systems Stuttgart 70569 Germany;

    Physical Intelligence Department Max Planck Institute for Intelligent Systems Stuttgart 70569 Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    lab-on-a-chip; Marangoni flow; microfluidics; thermal gradients; thermocapillary;

    机译:实验室内芯片;Marangoni流量;微流体;热梯度;热血管;

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