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Bioinspired transparent underwater superoleophobic and anti-oil surfaces

机译:受生物启发的透明水下超疏油和防油表面

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Reported here is a bioinspired fabrication of transparent underwater superoleophobic and anti-oil surfaces using a femtosecond laser treatment. Rough nanoscale structures were readily created on silica glass surfaces by femtosecond laser-induced ablation. Underwater superoleophobicity and ultralow oil-adhesion were obtained by the rough nanostructures with a wide variation of processing parameters, and the as-prepared surfaces exhibited a high transparency in water. This phenomenon is attributed to the presence of the water environment because scattering and refraction are effectively weakened. As a maskless and cost-effective method, the femtosecond laser processing of transparent materials (glass) may provide a new method to create biomimetic transparent underwater surfaces, allowing for the development of novel underwater anti-oil optical devices.
机译:此处报道的是采用飞秒激光处理技术的透明水下超疏油和抗油表面的生物启发制造方法。飞秒激光诱导的烧蚀很容易在石英玻璃表面产生粗糙的纳米级结构。粗糙的纳米结构具有较大的加工参数变化,从而获得了水下的超疏油性和超低的油密性,并且所制备的表面在水中具有很高的透明度。该现象归因于水环境的存在,因为有效地减弱了散射和折射。飞秒激光加工透明材料(玻璃)作为一种无掩膜且具有成本效益的方法,可能提供一种创建仿生透明水下表面的新方法,从而可以开发出新型的水下防油光学设备。

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