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A Novel Surface Tension Coefficient Measurement Method Based on Microposts Array Microfluidic Chip

机译:基于微柱阵列微流控芯片的表面张力系数测量新方法

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摘要

A novel surface tension measurement method based on microposts array microfluidic chip is presented and the fabrication process is studied. When the surface tension balance was broken due to evaporation, the tips of the microposts array submerged in aqueous solvent were pulled as vertical micro-cantilever at the liquid-air interface and displaced. In micro- or nanometers scale, the surface area to volume ratio becomes higher comparably, which means that the surface tension is dominant. The surface tension can be calculated by measuring microposts deformation. Microposts array was fabricated by templating the PDMS (poly-dimethylsiloxane) in the pores of polycarbonate track-etched (PCTE) membranes and filling the membrane pores by capillarity. Subsequently microposts were released by dissolving the template in an organic solvent and bond with micro-chamber collecting with micro-channel. By choosing appropriate membranes, different lengths and diameters of the microposts and the densities of the microposts arrays can be fabricated.
机译:提出了一种基于微柱阵列微流控芯片的表面张力测量新方法,并研究了其制备工艺。当表面张力平衡由于蒸发而破裂时,浸没在水性溶剂中的微柱阵列的末端在液-气界面处被拉成垂直微悬臂梁并移位。在微米或纳米尺度上,表面积与体积之比相对较高,这意味着表面张力占主导。可以通过测量微柱变形来计算表面张力。通过在聚碳酸酯径迹蚀刻(PCTE)膜的孔中模板化PDMS(聚二甲基硅氧烷)并通过毛细作用填充膜孔来制造微柱阵列。随后,通过将模板溶于有机溶剂中释放微柱,并与通过微通道收集的微室结合。通过选择合适的膜,可以制造不同长度和直径的微柱以及微柱阵列的密度。

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