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Photoreversible fragmentation of a liquid interface for micro-droplet generation by light actuation

机译:液体界面的光可逆破碎,通过光致动产生微滴

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摘要

We describe a method to induce by light a reversible switch from a continuous two-phase laminar flow to a droplet generating regime, in microfluidic devices with a usual water-in-oil flow focusing geometry. It consists in adding a photosensitive surfactant to the aqueous phase to modulate using light the interfacial energy between flowing liquids and the microfluidic substrate. We show that UV irradiation induces liquid fragmentation into monodisperse water microdroplets and that many cycles of reversible and rapid switches (<2 s) between continuous laminar flows and stable droplet regimes can be realized. By spatially controlling the application of the light stimulus, we also demonstrate the first spatially resolved remote induction of droplet generation.
机译:我们描述了一种在通常的油中水流聚焦几何形状的微流控设备中,通过光诱导从连续两相层流向液滴产生状态的可逆转换的方法。它包括将光敏表面活性剂添加到水相中,以利用光调节流动液体和微流体底物之间的界面能。我们表明紫外线辐射诱导液体破碎成单分散的水微滴,并且可以实现连续层流与稳定液滴状态之间许多可逆和快速切换(<2 s)的循环。通过空间控制光刺激的应用,我们还演示了液滴生成的第一个空间分辨的远程感应。

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