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Bio-inspired Water Repellent Surfaces Produced By Ultrafast Laser Structuring Of Silicon

机译:硅超快激光结构化生产的具有生物启发性的憎水表面

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We report here an efficient method for preparing stable superhydrophobic and highly water repellent surfaces by irradiating silicon wafers with femtosecond laser pulses and subsequently coating them with chloroalkylsilane monolayers. By varying the laser pulse fluence on the surface one can successfully control its wetting properties via a systematic and reproducible variation of roughness at micro- and nano-scale, which mimics the topology of natural superhydrophobic surfaces. The self-cleaning and water repellent properties of these artificial surfaces are investigated. It is found that the processed surfaces are among the most water repellent surfaces ever reported. These results may pave the way for the implementation of laser surface microstructuring techniques for the fabrication of superhydrophobic and self-cleaning surfaces in different kinds of materials as well.
机译:我们在这里报告了一种有效的方法,该方法可通过用飞秒激光脉冲辐照硅片,然后在其上涂上氯烷基硅烷单层涂层,从而制备稳定的超疏水和高疏水性表面。通过改变表面上的激光脉冲能量密度,可以通过在微米级和纳米级上系统且可重现地改变粗糙度,从而模仿天然的超疏水表面的拓扑结构,从而成功地控制其润湿性能。研究了这些人造表面的自清洁和拒水性能。发现加工过的表面是有史以来报道的最疏水的表面之一。这些结果可能为在不同类型的材料中制造超疏水和自清洁表面的激光表面微结构化技术的实施铺平道路。

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