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Morphology-Patterned Anisotropic Wetting Surface for Fluid Control and Gas-Liquid Separation in Microfluidics

机译:形态学的各向异性润湿表面,用于微流控中的流体控制和气液分离

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摘要

This article shows morphology-patterned stripes as a new platform for directing flow guidance of the fluid in microfluidic devices. Anisotropic (even unidirectional) spreading behavior due to anisotropic wetting of the underlying surface is observed after integrating morphology-patterned stripes with a Y-shaped microchannel. The anisotropic wetting flow of the fluid is influenced by the applied pressure, dimensions of the patterns, including the period and depth of the structure, and size of the channels. Fluids with different surface tensions show different flowing anisotropy in our microdevice. Moreover, the morphology-patterned surfaces could be used as a microvalve, and gas water separation in the microchannel was realized using the unidirectional flow of water. Therefore, benefiting from their good performance and simple fabrication process, morphology-patterned surfaces are good candidates to be applied in controlling the fluid behavior in microfluidics.
机译:本文显示了形态学图案的条纹,作为在微流控设备中引导流体流动的新平台。将形态学图案的条纹与Y形微通道整合后,观察到由于下表面的各向异性润湿而导致的各向异性(甚至单向)扩展行为。流体的各向异性润湿流受所施加的压力,图案的尺寸(包括结构的周期和深度)以及通道的尺寸的影响。具有不同表面张力的流体在我们的微型设备中显示出不同的流动各向异性。此外,可以将形态图案化的表面用作微阀,并利用水的单向流动实现微通道中的气水分离。因此,得益于其良好的性能和简单的制造工艺,形态图案化的表面是用于控制微流体中流体行为的良好候选者。

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