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Nonvolatile Liquid-Film-Embedded Microfluidic Valve for Microscopic Evaporation Control Without Stiction Problem at Liquid–Air Interfaces

机译:非易失性液膜嵌入式微流阀,用于微观蒸发控制,在液-气界面处无静压问题

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摘要

A critical problem of quick evaporation speed of fluids in the microscopic scale can cause many unexpected results and failures. Here, we introduce evaporation speed controlling effects of a thin liquid-film-based microfluidic valve in a microfluidic droplet ejector. The thin liquid film with nonvolatility and immiscibility exhibited an excellent microfluidic valve function without any stiction problem between valve components and provided a very effective evaporation protection barrier for the microfluids in the device. We have investigated its effectiveness for evaporation control at a microfluidic port with a liquid–air interface. Successful evaporation control by the liquid-film-embedded microfluidic valve has been demonstrated. We believe that this novel approach has immense potential in many microfluidic devices requiring a high level of evaporation control. $hfill$[2011-0328]
机译:微观尺度上的流体快速蒸发速度的关键问题可能会导致许多意想不到的结果和故障。在此,我们介绍微流体液滴喷射器中基于液膜的微流体阀的蒸发速度控制效果。具有不挥发性和不溶混性的液体薄膜表现出优异的微流体阀功能,在阀部件之间没有任何静摩擦问题,并且为装置中的微流体提供了非常有效的蒸发保护屏障。我们已经研究了其在具有液-气界面的微流体端口进行蒸发控制的有效性。已经证明通过嵌入液膜的微流体阀成功地控制了蒸发。我们相信,这种新颖的方法在许多需要高水平蒸发控制的微流体装置中具有巨大的潜力。 $ hfill $ [2011-0328]

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