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Decimating Spatial Frequency Components in Periodically Modulated Nanoscale Surface Structures for Sensing of Ambient Refractive Index Changes

机译:在周期性调制的纳米级表面结构中抽取空间频率分量,用于感测环境折射率变化

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In our previous study, we developed an array of unique porous structures (an array of barnacle-like porous structures) to apply to biosensing chips. The porous structure was formed by an internal swelling phenomenon of a polystyrene colloidal particle monolayer, which was surrounded by a poly(vinyl alcohol) layer, for the duration of the monolayer’s immersion in a toluene bath. Barnacle-like porous structures were formed when polystyrene particles that had rapidly swelled broke the outer layer around the top of the particles. However, after the surface was coated with a thin Ag layer, the porous structure showed a relatively broad extinction spectrum that was undesirable for sensing chips based on both surface plasmon extinction and grating coupling. In this paper, we propose an approach to obtain relatively sharp extinction spectra based on the decimation of the spatial frequencies of the porous structures. This study also investigates formation properties in more detail to control the structural features of the resultant porous structures. A relatively sharp peak in the extinction spectrum was ultimately obtained.
机译:在我们以前的研究中,我们开发了一系列独特的多孔结构(一系列晶格状多孔结构),以适用于生物传感芯片。通过聚苯乙烯胶体颗粒单层的内部膨胀现象形成多孔结构,其被聚(乙烯醇)层包围,用于甲苯浴中的单层浸渍的持续时间。当快速膨胀的聚苯乙烯颗粒在颗粒的顶部突破外层时,形成晶状体状多孔结构。然而,在用薄Ag层涂覆表面之后,多孔结构显示出相对宽的消光谱,这对于基于两个表面等离子体灭射和光栅耦合来传感芯片是不希望的。在本文中,我们提出了一种基于多孔结构的空间频率的抽取来获得相对尖锐的消光光谱的方法。该研究还更详细地研究了形成性质以控制所得多孔结构的结构特征。最终获得了消光谱中的相对尖锐的峰值。

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