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Independent Control of Drop Size and Velocity in Microfluidic Flow-Focusing Generators Using Variable Temperature and Flow Rate

机译:使用可变的温度和流量独立控制微流控流发生器中的液滴大小和速度

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This paper describes a method to control the volume and the velocity of drops generated in a flow-focusing device dynamically and independently. This method involves simultaneous tuning of the temperature of the nozzle of the device and of the flow rate of the continuous phase; the method requires a continuous phase liquid that has a viscosity that varies steeply with temperature. Increasing the temperature of the flow-focusing nozzle from 0 to 80 deg C increased the volume of the drops by almost 2 orders of magnitude. Tuning both the temperature and the flow rate controlled the drop volume and the drop velocity independently; this feature is not possible in a basic flow-focusing device. This paper also demonstrates a procedure for identifying the range of possible drop volumes and drop velocities for a given flow-focusing device and shows how to generate drops with a specified volume and velocity within this range. This method is easy to implement in on-chip applications where thermal management is already incorporated in the system, such as DNA amplification using the polymerase chain reaction and nanoparticle synthesis.
机译:本文介绍了一种动态独立地控制流聚焦设备中产生的液滴的体积和速度的方法。该方法涉及同时调节装置的喷嘴的温度和连续相的流速。该方法需要粘度随温度急剧变化的连续相液体。流动聚焦喷嘴的温度从0摄氏度增加到80摄氏度,液滴的体积几乎增加了2个数量级。调节温度和流量可独立控制液滴的体积和速度。在基本的流量聚焦设备中无法实现此功能。本文还演示了为给定的流量聚焦设备识别可能的液滴体积和液滴速度范围的过程,并展示了如何在此范围内以指定的体积和速度生成液滴。这种方法易于在芯片上应用中实施,在芯片上应用中,热管理已纳入系统中,例如使用聚合酶链反应的DNA扩增和纳米颗粒合成。

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