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Hot embossing of multifunctional transparent polymers from Cr stamps structured by direct laser interference patterning

机译:通过直接激光干涉构图构造的Cr压模对多功能透明聚合物进行热压花

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In this contribution, Cr stamps were structured with periodic hole-like arrays using Direct Laser Interference Patterning. Using optimized laser processing parameters, homogeneous textures with different spatial periods and aspect ratios were produced, as observed with confocal microscopy. Then, these stamps were used as molds for patterning transparent polymers, namely polyethylene terephthalate (PET), poly(methyl methacrylate) (PMMA) and polycarbonate (PC) by plate-to-plate hot embossing. Adjusting the imprint time and temperature, replicas of the Cr stamps were fabricated reproducing faithfully the mold shape. Static water contact angle (WCA) measurements were done to study the wettability properties of these structured polymers. The results show that the produced topographies increase the WCA compared to the flat references up to an absolute maximum of 55° in the three polymers. For instance, a PET foil structured with a spatial period of 4.7 μmand a structured depth of 3 μm showed a WCA of 139° representing an increase of about 70% compared to a flat sample. The diffraction intensity of the patterned polymers was measured with an imaging optics and a spectrometer coupled to a goniometer in order to characterize their optical properties. It was found that for those samples processed with 80 or less applied laser pulses the diffraction peaks are clearly identified, whereas for large number of pulses there is more diffuse light travelling along random directions and the diffraction peaks become less defined. In conclusion, enhanced wettability and optical functionalities were achieved in transparent polymers imprinted with periodic microstructures.
机译:在此贡献中,使用直接激光干涉图案化,通过周期性的孔状阵列来构造Cr压模。使用共聚焦显微镜观察到,使用优化的激光加工参数,可以产生具有不同空间周期和纵横比的均匀纹理。然后,将这些压模用作通过板对板热压花对透明聚合物(即聚对苯二甲酸乙二酯(PET),聚(甲基丙烯酸甲酯)(PMMA)和聚碳酸酯(PC))进行构图的模具。调整压印时间和温度,制作了Cr压模的复制品,如实地复制了模具的形状。进行静态水接触角(WCA)测量以研究这些结构化聚合物的润湿性。结果表明,与平面基准相比,三种聚合物产生的形貌使WCA最高增加到55°的绝对最大值。例如,空间周期为4.7μm,结构深度为3μm的PET箔片的WCA为139°,与平坦样品相比,增加了约70%。用成像光学器件和耦合到测角仪的光谱仪测量构图的聚合物的衍射强度,以表征它们的光学性质。已经发现,对于那些用80个或更少的施加的激光脉冲处理的样品,可以清楚地识别出衍射峰,而对于大量的脉冲,则有更多的沿随机方向传播的漫射光,并且衍射峰的定义变少了。总之,在印有周期性微结构的透明聚合物中可实现增强的润湿性和光学功能。

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