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Waveguide Plasmon Resonance of Arrayed Metallic Nanostructures Patterned on a Soft Substrate by Direct Contact Printing Lithography

机译:直接接触印刷光刻技术在软基板上构图的阵列金属纳米结构的波导等离子体共振

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摘要

This paper presents a direct contact printing method to obtain arrayed metallic nanostructures on a soft polymer substrate. It utilizes a polydimethylsiloxane (PDMS) mold replicated from silicon molds to transfer metallic nanopatterns onto a polymer substrate based on differences in interfacial bonding energy. Arrayed metallic nanodisks with a disk diameter down to 180 nm and a center-to-center pitch around 400 nm are experimentally patterned on a PET substrate. The patterned metallic nanostructures are then spin-coated with a polymer layer; which mechanically secures the patterned nanostructures and optically allows waveguide plasmon resonance being excited by incident EM waves. Both experimental works and theoretical modeling are given to illustrate the behaviors of different types of plasmon resonance. These arrayed metallic nanostructures patterned on a soft polymer substrate and their tunable optical characteristics open up many possibilities in future engineering applications.
机译:本文提出了一种直接接触印刷的方法,以获得在柔软的聚合物基底上排列的金属纳米结构。它利用从硅模具复制来的聚二甲基硅氧烷(PDMS)模具,根据界面结合能的差异将金属纳米图案转移到聚合物基材上。在PET基板上通过实验将阵列直径低至180 nm且中心距大约为400 nm的金属纳米盘阵列化。然后将图案化的金属纳米结构旋涂有聚合物层。机械固定图案化的纳米结构,并在光学上使入射的EM波激发波导等离子体激元共振。给出了实验工作和理论模型,以说明不同类型的等离子体激元共振的行为。这些在柔软的聚合物基板上构图的金属纳米结构阵列及其可调的光学特性为将来的工程应用打开了许多可能性。

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