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Nanofibrillar Patterns by Plasma Etching: The Influence of Polymer Crystallinity and Orientation in Surface Morphology

机译:通过等离子刻蚀的纳米原纤维图案:聚合物结晶度和取向在表面形态中的影响。

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This manuscript explores the possibility of exploiting polymer morphology (thermal or flow-induced) as materials inherent template, and domain-selective plasma etching as pattern developer, to obtain nanopatterned surfaces with different and controlled geometries, with a particular focus on nanofibrillar patterns. Oxidative plasma treatment of PET films has rendered patterned surfaces with different geometries depending on the crystallinity and orientation of the PET sample and plasma treatment time (or etching ratio). Homogeneous patterns with either randomly distributed or aligned nanofibrils with diameters between 20 and 40 nm and lengths up to 1 μm (after extensive etching) were observed depending on the sample pretreatment. Our results demonstrate the potential of oxidative plasmas as templateless nanopatterning technique and reveal a complex interplay between plasma etching parameters and polymer microstructure driving the pattern formation mechanism. These results open the possibility of fabricating gecko-inspired surfaces in a cost-effective manner.
机译:该手稿探讨了利用聚合物形态(热或流动诱导)作为材料固有模板,以及将区域选择性等离子体刻蚀用作图案显影剂的可能性,以获得具有不同和受控几何形状的纳米图案化表面,特别关注纳米原纤状图案。根据PET样品的结晶度和方向以及等离子处理时间(或蚀刻率),PET膜的氧化等离子处理已使图案化的表面具有不同的几何形状。根据样品预处理,观察到具有随机分布或排列的纳米纤维的均质图案,其直径在20到40 nm之间,长度可达1μm(经过广泛蚀刻)。我们的结果证明了氧化等离子体作为无模板纳米图案化技术的潜力,并揭示了等离子体蚀刻参数与驱动图案形成机理的聚合物微结构之间的复杂相互作用。这些结果打开了以具有成本效益的方式制造壁虎风格表面的可能性。

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