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Large-Area Fabrication of Laser-Induced Periodic Surface Structures on Fused Silica Using Thin Gold Layers

机译:使用薄金层在熔融石英上大面积制造激光诱导的周期性表面结构

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摘要

Despite intensive research activities in the field of laser-induced periodic surface structures (LIPSS), the large-area nanostructuring of glasses is still a challenging problem, which is mainly caused by the strongly non-linear absorption of the laser radiation by the dielectric material. Therefore, most investigations are limited to single-spot experiments on different types of glasses. Here, we report the homogeneous generation of LIPSS on large-area surfaces of fused silica using thin gold layers and a fs-laser with a wavelength = 1025 nm, a pulse duration = 300 fs, and a repetition frequency = 100 kHz as radiation source. For this purpose, single-spot experiments are performed to study the LIPSS formation process as a function of laser parameters and gold layer thickness. Based on these results, the generation of large-area homogenous LIPSS pattern was investigated by unidirectional scanning of the fs-laser beam across the sample surface using different line spacing. The nanostructures are characterized by a spatial period of about 360 nm and a modulation depth of around 160 nm. Chemical surface analysis by Raman spectroscopy confirms a complete ablation of the gold film by the fs-laser irradiation. The characterization of the functional properties shows an increased transmission of the nanostructured samples accompanied by a noticeable change in the wetting properties, which can be additionally modified within a wide range by silanization. The presented approach enables the reproducible LIPSS-based laser direct-writing of sub-wavelength nanostructures on glasses and thus provides a versatile and flexible tool for novel applications in the fields of optics, microfluidics, and biomaterials.
机译:尽管在激光诱导的周期性表面结构(LIPSS)领域进行了广泛的研究活动,但是玻璃的大面积纳米结构化仍然是一个具有挑战性的问题,这主要是由于介电材料强烈地非线性吸收了激光辐射。因此,大多数研究仅限于对不同类型的眼镜进行单点实验。在这里,我们报告了使用薄金层和波长为1025 nm,脉冲持续时间为300 fs,重复频率为100 kHz的fs激光在熔融石英大面积表面上均匀生成LIPSS的方法。为此,进行单点实验以研究LIPSS形成过程与激光参数和金层厚度的关系。基于这些结果,通过使用不同的行距对样品表面上的fs激光束进行单向扫描,研究了大面积均匀LIPSS模式的产生。纳米结构的特征在于约360nm的空间周期和约160nm的调制深度。通过拉曼光谱的化学表面分析证实了通过fs激光照射对金膜的完全烧蚀。功能特性的表征表明,纳米结构样品的透射率增加,同时润湿性能发生明显变化,可以通过硅烷化在较大范围内对其进行额外修饰。提出的方法使基于LIPSS的可重现的激光直接写入玻璃上的亚波长纳米结构成为可能,从而为光学,微流体和生物材料领域的新型应用提供了一种灵活而灵活的工具。

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