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Superhydrophobic laser-ablated stainless steel substrates exhibiting Cassie-Baxter stable state

机译:表现出Cassie-Baxter稳定状态的超疏水激光烧蚀不锈钢基材

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摘要

In order to produce long-lasting, non-wettable surfaces, femtosecond laser ablation process was used to produce microano structures on metallic surfaces. The effects of femtosecond laser irradiation process parameters (fluence, scanning speed and laser beam overlap) on the hydrophobicity of the resulting microano-patterned morphologies on stainless steel were studied in detail. Seven distinctly different microano patterns, namely nano-rippled, paraboloidal, sinusoidal, triple roughness, cauliflowered, tulip and scaly patterns, were fabricated. The latter pattern (scaly) was found to be identical to that of the butterfly wing structure. All patterns were classified according to laser intensity and scanning speed. Consequently, the fabricated substrates were chemically treated by silanization (Young contact angle (CA) of about 105°) in order to examine the additional effects of nanopatterning on wettability. The analysis of wettability revealed enhanced superhydrophobicity for most of these structures, particularly for the cauliflowered and scaly patterns with CAs in excess of 160° and contact angle hysteresis of less than 10°. Finally, the cauliflowered pattern was found to possess a stable composite state, which is important for certain applications such as friction (Cassie–Baxter).
机译:为了产生持久的,不可润湿的表面,飞秒激光烧蚀工艺用于在金属表面产生微/纳米结构。飞秒激光辐照工艺参数(通量,扫描速度和激光束重叠)对所产生的不锈钢微/纳米图案形态的疏水性的影响进行了详细研究。制作了七个明显不同的微/纳米图案,即纳米波纹,抛物线形,正弦形,三重粗糙度,花椰菜形,郁金香形和鳞状图案。发现后者的图案(鳞片状)与蝴蝶翼结构的图案相同。根据激光强度和扫描速度对所有图案进行分类。因此,通过硅烷化(约105°的年轻接触角(CA))对制成的基板进行化学处理,以检查纳米图案对润湿性的附加影响。润湿性分析表明,对于大多数此类结构,特别是对于花椰菜和鳞片状图案(CA超过160°,接触角滞后小于10°),超疏水性增强。最后,发现菜花图案具有稳定的复合状态,这对于某些应用(例如摩擦(Cassie–Baxter))很重要。

著录项

  • 来源
    《Surface Innovations》 |2015年第3期|151-163|共13页
  • 作者单位

    Department of Chemical and Biological Engineering, The University of British Columbia, Vancouver, British Columbia, Canada;

    Lead of Laboratory for Advanced Spectroscopy and Imaging research (LASIR), Department of Chemistry, The University of British Columbia,Vancouver, British Columbia, Canada;

    Department of Chemical and Biological Engineering, The University of British Columbia, Vancouver, British Columbia, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laser ablation; nanostructures; superhydrophobicity;

    机译:激光烧蚀纳米结构超疏水性;

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