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Micro and nano structuring and texturing of polymers using plasma processes: potential manufacturing applications

机译:使用等离子工艺对聚合物进行微米和纳米结构化和纹理化:潜在的制造应用

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摘要

We review our recent work on the deterministic (top down) microano structuring and stochastic (random) microano texturing of polymeric materials for a variety of applications. We create polymeric microfludics/microsystems using plasma processing as well as 'smart' polymer surfaces with controlled wetting and optical properties. First, fabrication of polymeric micro-nanosystems and microfluidics using standard photolithography followed by plasma etching is proposed as an alternative method for polymer microfabrication. Second, plasma induced polymer nanoroughening (nanotexturing) is proposed as an extremely attractive methodology to control the wetting properties of polymers and create superhydrophilic or hydrophobic or robust superhydrophobic polymer surfaces. These surfaces may in addition possess controlled optical properties, such as antireflectance combined with good transmittance. Third, ordered spontaneously formed structures are created on plasma processed polymers. Potential applications are discussed.
机译:我们回顾了有关聚合物材料的确定性(自上而下)微/纳米结构化和随机(随机)微/纳米织构化的最新工作,以用于各种应用。我们使用等离子处理以及具有受控润湿和光学特性的“智能”聚合物表面来创建聚合物微流体/微系统。首先,提出了使用标准光刻法制造聚合物微纳米系统和微流体技术,然后进行等离子刻蚀的方法,作为聚合物微加工的替代方法。其次,提出了等离子体诱导的聚合物纳米粗糙化(纳米纹理化)作为一种极具吸引力的方法,以控制聚合物的润湿性能并创建超亲水或疏水或坚固的超疏水聚合物表面。这些表面还可以具有受控的光学性质,例如结合良好的透射率的抗反射性。第三,在等离子体处理的聚合物上产生有序的自发形成的结构。讨论了潜在的应用。

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