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Biomimetic surface structuring using cylindrical vector femtosecond laser beams

机译:使用圆柱形矢量飞秒激光束的仿生表面结构

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摘要

We report on a new, single-step and scalable method to fabricate highly ordered, multi-directional and complex surface structures that mimic the unique morphological features of certain species found in nature. Biomimetic surface structuring was realized by exploiting the unique and versatile angular profile and the electric field symmetry of cylindrical vector (CV) femtosecond (fs) laser beams. It is shown that, highly controllable, periodic structures exhibiting sizes at nano-, micro- and dual- micro/nano scales can be directly written on Ni upon line and large area scanning with radial and azimuthal polarization beams. Depending on the irradiation conditions, new complex multi-directional nanostructures, inspired by the Shark’s skin morphology, as well as superhydrophobic dual-scale structures mimicking the Lotus’ leaf water repellent properties can be attained. It is concluded that the versatility and features variations of structures formed is by far superior to those obtained via laser processing with linearly polarized beams. More important, by exploiting the capabilities offered by fs CV fields, the present technique can be further extended to fabricate even more complex and unconventional structures. We believe that our approach provides a new concept in laser materials processing, which can be further exploited for expanding the breadth and novelty of applications.
机译:我们报告了一种新的单步和可扩展方法,用于制造高度有序,多向和复杂的表面结构,这些结构模拟了本质上发现的某些物种的独特形态特征。通过利用独特和多功能的角度轮廓和圆柱形载体(CV)飞秒(FS)激光束的电场对称来实现仿真表面结构。结果表明,在纳米,微型和双微/纳米尺度上表现出尺寸的高度可控的周期性结构可以直接在线和大面积扫描,径向和方位角偏振梁直接写入Ni。根据照射条件,新的复杂多向纳米结构,受到鲨鱼皮肤形态的启发,以及模仿莲花的叶子防水性能的超疏水双模结构。结论是,形成的结构的多功能性和特征是通过具有线性偏振梁的激光加工获得的结构的多功能性和特征。更重要的是,通过利用FS CV字段提供的能力,可以进一步扩展本技术以制造更复杂和非常规结构。我们认为,我们的方法在激光材料加工方面提供了一种新的概念,可以进一步利用扩大宽度和新颖的应用。

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