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Femtosecond laser irradiation of metallic surfaces: Effects of laser parameters on superhydrophobicity

机译:飞秒激光照射金属表面:激光参数对超疏水性的​​影响

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摘要

This work studies in detail the effect of femtosecond laser irradiation process parameters (fluence and scanning speed) on the hydrophobicity of the resulting microano-patterned morphologies on stainless steel. Depending on the laser parameters, four distinctly different nano-patterns were produced, namely nano-rippled, parabolic-pillared, elongated sinusoidal-pillared and triple roughness nano-structures. All of the produced structures were classified according to a newly defined parameter, the laser intensity factor (LIF); by increasing the LIF, the ablation rate and periodicity of the asperities increase. In order to decrease the surface energy, all of the surfaces were coated with a fluoroalkylsilane agent. Analysis of the wettability revealed enhanced superhydrophobicity for most of these structures, particularly those possessing the triple roughness pattern that also exhibited low contact angle hysteresis. The high permanent superhydrophobicity of this pattern is due to the special microano-structure of the surface that facilitates the Cassie-Baxter state.
机译:这项工作详细研究了飞秒激光辐照工艺参数(通量和扫描速度)对在不锈钢上形成的微/纳米图案形态的疏水性的影响。根据激光参数,产生了四个截然不同的纳米图案,即纳米波纹状,抛物线形的柱状,细长正弦形的柱状和三重粗糙度的纳米结构。根据新定义的参数激光强度因子(LIF)对所有产生的结构进行分类;通过增加LIF,消融率和粗糙的周期性增加。为了降低表面能,所有表面均涂覆有氟代烷基硅烷试剂。润湿性的分析表明,对于大多数这些结构,特别是具有三重粗糙度图案的结构,该结构也具有较低的接触角滞后,从而增强了超疏水性。该图案的高永久超疏水性是由于表面的特殊微/纳米结构促进了Cassie-Baxter态。

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