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Ultrafast large-area micropattern generation in nonabsorbing polymer thin films by pulsed laser diffraction

机译:脉冲激光衍射在非吸收性聚合物薄膜中超快速大面积微图案生成

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摘要

An ultrafast, parallel, and beyond-the-master micropatterning technique for ultrathin (30-400 nm) nonabsorbing polymer films by diffraction of laser light through a 2D periodic aperture is reported. The redistribution of laser energy absorbed by the substrate causes self-organization of polymer thin films in the form of wrinklelike surface relief structures caused by localized melting and freezing of the thin film. Unlike conventional laser ablation and laser writing processes, low laser fluence is employed to only passively swell the polymer as a pre-ablative process without loss of material, and without absorption/reaction with incident radiation. Self-organization in the thin polymer film, aided by the diffraction pattern, produces microstructures made up of thin raised lines. These regular microstructures have far more complex morphologies than the mask geometry and very narrow line widths that can be an order of magnitude smaller than the openings in the mask. The microstructure morphology is easily modulated by changing the film thickness, aperture size, and geometry, and by changing the diffraction pattern.
机译:报道了一种超快,平行且超越传统的微图案技术,该技术通过通过2D周期孔径的激光衍射来对超薄(30-400 nm)非吸收性聚合物薄膜进行微处理。基材吸收的激光能量的重新分布会导致聚合物薄膜的自组织化,这是由于薄膜的局部熔化和冻结导致的皱纹状表面起伏结构的形式。与传统的激光烧蚀和激光写入过程不同,采用低激光注量仅作为消融过程被动地使聚合物溶胀,不会损失材料,也不会与入射辐射发生吸收/反应。聚合物薄膜中的自组织在衍射图的帮助下产生了由细凸起线组成的微结构。这些规则的微结构具有比掩模几何形状复杂得多的形貌,并且非常窄的线宽可以比掩模中的开口小一个数量级。通过改变膜的厚度,孔径大小和几何形状以及改变衍射图,可以很容易地调节微观结构的形态。

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