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Modification of Micronozzle Surfaces Using Fluorinated Polymeric Nanofilms for Enhanced Dispensing of Polar and Nonpolar Fluids

机译:使用氟化聚合物纳米膜对微喷嘴表面进行改性,以增强极性和非极性流体的分配

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摘要

In this work, we report on the surface modification of a micronozzle surface to enhance fluid dispensing in the nanoliter range. Unmodified dispensing chips usually suffer from lateral wetting of the nozzle surfaces by low surface tension liquids resulting in poor control of the volume of the dispensed fluid. Covalent attachment of a fluorinated acrylate polymer to the outer surface of the micronozzle using a novel UV irradiation process helps to overcome capillary and adhesive forces and results in an enhancement of the control on fluid dispensing in the nanoliter range. The modified nozzles have been tested with a variety of fluids having a wide range of surface tensions. The surface modification allows precise control of the dispensing of nanoliter droplets with a high degree of reproducibility.
机译:在这项工作中,我们报告了微喷嘴表面的表面改性,以增强纳升范围内的流体分配。未改性的分配屑通常由于低表面张力液体而遭受喷嘴表面的侧向润湿,从而导致分配流体的体积控制不良。使用新颖的紫外线照射工艺将氟化丙烯酸酯聚合物共价附接到微喷嘴的外表面,有助于克服毛细作用力和粘附力,并增强了对纳升范围内的流体分配的控制。改进后的喷嘴已经用多种具有广泛表面张力的流体进行了测试。表面改性允许以高度可重复性精确控制纳升液滴的分配。

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