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Replication of nanopits and nanopillars by roll-to-roll extrusion coating using a structured cooling roll

机译:使用结构化冷却辊通过卷对卷挤出涂布复制纳米颗粒和纳米柱

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摘要

This paper investigates a novel, very high throughput, roll-to-roll (R2R) process for nanostructuring of polymer foils, called R2R extrusion coating. It has the potential to accelerate the integration of nanostructured materials in consumer products for a variety of applications, including optical, technical, and functional surfaces and devices. In roll-to-roll extrusion coating, a molten polymer film is extruded through a flat die forming a melt curtain, and then laminated onto a carrier foil. The lamination occurs as the melt curtain is pressed between a cooling roller and a counter roller. By mounting a nanostructured metal shim on the surface of the cooling roller, the relief structure from the shim can be replicated onto a thermoplastic foil. Among the benefits of, the process are availability of a wide range of commercial extruders, off-the-shelf extrusion grade polymers, functional additives, polymeric materials with good diffusion barrier properties, and the overall maturity of the technology [S. H. Ahn and L. J. Guo, Adv. Mater. 20, 2044 (2008)]. In this article, the authors demonstrate replication of nanopits and nanopillars with diameters between 40 and 120 nm and depth/height of 100 nm. The best replication was achieved in polypropylene, by running at high roller line-speed of 60 m/min, and high cooling roller temperature of 70°C. Replication in other common polymers like polyethylene and polystyrene was not possible for the parameter range used for the investigation.
机译:本文研究了一种新颖的,非常高产量的卷对卷(R2R)工艺,用于聚合物箔的纳米结构化,称为R2R挤出涂层。它具有加速纳米结构材料在消费产品中集成的潜力,可用于各种应用,包括光学,技术和功能性表面和设备。在卷对卷挤出涂布中,将熔融的聚合物膜通过平模挤出形成熔体幕,然后层压到载体箔上。层压是在将熔融帘幕压在冷却辊和对辊之间时发生的。通过将纳米结构的金属垫片安装在冷却辊的表面,可以将垫片的凸版结构复制到热塑性箔片上。该方法的优点之一是可使用多种商用挤出机,现成的挤出级聚合物,功能性添加剂,具有良好扩散阻隔性能的聚合物材料,以及该技术的整体成熟度。 H.Ahn和L.J.Guo,Adv。母校20,2044(2008)]。在本文中,作者演示了直径在40到120 nm之间且深度/高度为100 nm的纳米凹坑和纳米柱的复制。通过以60 m / min的高辊线速度和70°C的高冷却辊运行,在聚丙烯中实现了最佳复制。对于用于研究的参数范围,无法在其他常见的聚合物(如聚乙烯和聚苯乙烯)中复制。

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