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具有渗流膜法布里-珀罗纳米腔的有源反射传感器

Vibrant reflective sensors with percolation film Fabry-Pérot nanocavities.

作者信息

Palinski Timothy J, Tadimety Amogha, Trase Ian, Vyhnalek Brian E, Hunter Gary W, Garmire Elsa, Zhang John X J

出版信息

Opt Express. 2021 Aug 2;29(16):25000-25010. doi: 10.1364/OE.432097.

Abstract

Dynamically reconfigurable structural colors are promising materials for new smart optical systems. However, improved reflected color quality (e.g., saturation, optical contrast, angular invariance) and larger tuning range/sensitivity are needed. Here, we demonstrate a vibrant, actively tunable system which meets these needs via coupling broadband plasmonic resonators to a responsive polymer film. Our structure consists of near-percolation gold nanoislands deposited on a poly[methyl methacrylate] (PMMA) spacer above a gold mirror, forming a Fabry-Pérot nanocavity. Broadband absorption in this system creates vivid reflected colors, while the polymer spacer enables continuous tuning over a wide color space. By exploiting swelling effects in PMMA, we show fast, reversible color switching in response to organic vapors. Our sensitive optical structure amplifies small vapor-induced changes in the spacer thickness, enabling naked-eye detection of changes as small as 10 nm. Additionally, optical absorption >99% yields modulation contrasts up to 80:1, opening the door to ultra-sensitive on-chip signal measurements, complementing the visual colorimetric readout. This structure has immediate implications for colorimetric bio/chemical sensing and may also find application to reflective displays and flexible/adaptive optical coatings.

摘要

动态可重构结构色是新型智能光学系统中很有前景的材料。然而,需要提高反射颜色质量(如饱和度、光学对比度、角度不变性)以及更大的调谐范围/灵敏度。在此,我们展示了一种充满活力的、可主动调谐的系统,该系统通过将宽带等离子体谐振器与响应性聚合物薄膜耦合来满足这些需求。我们的结构由沉积在金镜上方聚甲基丙烯酸甲酯(PMMA)间隔层上的近渗流金纳米岛组成,形成一个法布里 - 珀罗纳米腔。该系统中的宽带吸收产生鲜艳的反射颜色,而聚合物间隔层能够在很宽的颜色空间内进行连续调谐。通过利用PMMA中的溶胀效应,我们展示了对有机蒸汽的快速、可逆颜色切换。我们灵敏的光学结构放大了蒸汽引起的间隔层厚度的微小变化,能够肉眼检测低至10纳米的变化。此外,大于99%的光吸收率产生高达80:1的调制对比度,为超灵敏的片上信号测量打开了大门,补充了视觉比色读出。这种结构对比色生物/化学传感具有直接影响,也可能应用于反射式显示器和柔性/自适应光学涂层。

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