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The Influence of Laser Ablation Parameters on the Holes Structure of Laser Manufactured Graphene Paper Microsieves

机译:激光烧蚀参数对激光制造石墨烯纸微孔结构的影响

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摘要

The graphene paper microsieves can be applied in the filtration of biological fluids or separation of solid particles from exploitation fluids. To produce graphene paper microsieves for specific applications, good control over fabrication should be achieved. In this study, a laser ablation method using a picosecond laser was applied to fabricate graphene paper microsieves. Holes in the microsieves were drilled using pulsed laser radiation with a pulse energy from 5 to 100 µJ, a duration of 60 ps, a wavelength of 355 nm, and a repetition rate of 1 kHz. The impact method was applied using 10 to 100 pulses to drill one hole. To produce holes of a proper diameter which could separate biological particles of a certain size (≥10 µm), optimum parameters of graphene paper laser ablation were defined using the MATLAB software taking into account laser pulse energy, repetition rate, and a desired hole diameter. A series of structural tests were carried out to determine the quality of an edge and a hole shape. Experimental results and Laguerre–Gauss calculations in MATLAB were then compared to perform the analysis of the distribution of diffraction fringes. Optimum experimental parameters were determined for which good susceptibility of the graphene paper to laser processing was observed.
机译:石墨烯纸微筛可用于生物流体的过滤或从开采流体中分离固体颗粒。为了生产用于特定应用的石墨烯纸微筛,应当实现对制造的良好控制。在这项研究中,使用皮秒激光的激光烧蚀方法被应用于制造石墨烯纸微筛。使用脉冲能量为5至100 µJ,持续时间为60 ps,波长为355 nm,重复频率为1 kHz的脉冲激光辐射在微筛上钻孔。冲击方法是使用10到100个脉冲来钻一个孔。为了产生合适直径的孔,可以分离出一定大小(≥10µm)的生物颗粒,使用MATLAB软件定义了石墨烯纸激光烧蚀的最佳参数,同时考虑了激光脉冲能量,重复频率和所需的孔直径。进行了一系列的结构测试,以确定边缘和孔形状的质量。然后将实验结果和MATLAB中的Laguerre-Gauss计算进行比较,以分析衍射条纹的分布。确定了最佳实验参数,可观察到石墨烯纸对激光加工的良好敏感性。

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