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SUPERHYDROPHOBIC SURFACES WITH MICRO-/NANO- STRUCTURES PREPARED BY FEMTOSECOND LASER

机译:具有由飞秒激光制备的微/纳米结构的超疏水表面

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Synthetic superhydrophobic surfaces have attracted considerable attention because they reduce effects such as friction, erosion, and contamination of devices. In this paper, a simple method for fabricating superhydrophobic metallic surfaces with femtosecond laser pulses is presented. The laser irradiation creates a surface morphology that exhibits structures on the micro- and nanoscales. By varying the laser fluence, focus position and scanning mode, we can tune the feature sizes and morphologies of microstructures and nanostructures. The wetting properties of surface change with the micro/nano structure are characterized. The contact angles for water on polished surface and surface with micro- and nano- structures are measured and compared. It is found that the contact angles for water on the micro- and nano- structured surfaces is higher about 40 deg than that on the polished surface. The results indicate that laser ablation is effective surface texturing method and the composite structures with micro- and nanoscales improve the hydrophobic property of metals effectively.
机译:合成的超疏水表面引起了相当大的关注,因为它们减少了摩擦,侵蚀和器件污染等效果。本文介绍了一种用飞秒激光脉冲制造超疏水金属表面的简单方法。激光辐射产生表面形态,其在微型和纳米粒子上表现出结构。通过改变激光液化,焦点位置和扫描模式,我们可以调整微观结构和纳米结构的特征尺寸和形态。具有微/纳米结构的表面变化的润湿性。测量并比较水对抛光表面和表面的接触角,并进行比较。发现微型和纳米结构表面上的水的接触角度比抛光表面上的水高约40°。结果表明,激光烧蚀是有效的表面纹理化方法和微型和纳米粒子的复合结构有效地改善了金属的疏水性。

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