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Generation of micro- and nano-morphologies on a stainless steel surface irradiated with 257?nm femtosecond laser pulses

机译:在257?nm飞秒激光脉冲照射下的不锈钢表面上产生微米和纳米形态

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Surface structuring by femtosecond lasers has emerged as an efficient tool to functionalize the surfaces of various solid materials. Laser induced periodic surface structures (LIPSS) can drastically impact the wetting, friction and optical properties of the surface depending on the size, aspect ratio and period of the structures. Morphological characteristics in the nanoscale, such as nano roughness, contributing to a hierarchical surface formation are considered to have a significant impact on those properties. In this study, we demonstrate for the first time to our knowledge the feasibility of inducing ripples and spikes utilizing a 257 nm femtosecond laser. LIPSS with a period smaller than 200 nm were realised. Furthermore, we show the evolution of those structures into conical spikes for this wavelength, and we provide an interpretation on their formation. Finally, we show that sub 200 nm LIPSS can create subwavelength gratings providing non-angular dependent light reflection and non-periodic morphologies showing super hydrophobic behaviour.
机译:飞秒激光的表面结构化已成为使各种固体材料的表面功能化的有效工具。激光诱导的周期性表面结构(LIPSS)会严重影响表面的润湿,摩擦和光学特性,具体取决于结构的尺寸,长宽比和周期。纳米级的形态特征,例如纳米粗糙度,有助于形成分层的表面,被认为对那些性质具有重大影响。在这项研究中,我们首次证明了使用257 nm飞秒激光诱导纹波和尖峰的可行性。实现了周期小于200 nm的LIPSS。此外,我们显示了在该波长下这些结构演变为锥形尖峰的过程,并提供了对其形成的解释。最后,我们表明,低于200 nm的LIPSS可以创建亚波长光栅,从而提供非角度相关的光反射和非周期形态,从而显示出超疏水性。

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