Relative humidity sensing using dye-doped polymer thin-films on metal substrates

Madhuri Kumari, B. Ding, R. Blaikie
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Abstract

We demonstrate humidity sensors based on optical resonances sustained in sub-wavelength thick dye-doped polymer coatings on reflecting surfaces. As a result of coupling between dye molecular absorption and Fabry-Perot resonances in the air-coating-surface cavity, the absorption spectra of such thin-film structures show a strong resonant peak under certain illumination conditions. These resonances are sensitive to the structural and material properties of the thin-film, metal underlayer and ambient conditions and hence can be used for gas and vapor sensing applications. Specifically, we present our proof of principle experimental results for humidity sensing using a thin-film structure comprising Rhodamine6G-doped polyvinyl alcohol (PVA) films on silver substrates. Depending on the PVA film thickness, dye-concertation and angle of incidence, the resonant absorption peak can undergo either red-shift or blue-shift as RH level increases in the range 20% to 60%. Also, the absorption magnitude at certain wavelengths near to resonance show almost linear reduction which can be used as the sensing signal. Our simulation studies show a very good agreement with the experimental data. The spectral and temporal sensitivity of this thin-film structure is attributed to the changes in the thickness of the PVA layer which swells by absorbing water molecules
金属基板上染料掺杂聚合物薄膜的相对湿度传感
我们展示了基于反射表面上亚波长厚染料掺杂聚合物涂层的光学共振的湿度传感器。由于空气涂层-表面腔中染料分子吸收与法布里-珀罗共振之间的耦合作用,在一定的光照条件下,这种薄膜结构的吸收光谱呈现出强共振峰。这些共振对薄膜、金属底层和环境条件的结构和材料特性很敏感,因此可用于气体和蒸汽传感应用。具体地说,我们提出了我们的原理实验结果证明湿度传感使用薄膜结构,包括罗丹明6g掺杂聚乙烯醇(PVA)薄膜在银衬底上。根据PVA膜厚度、染料浓度和入射角的不同,在20% ~ 60%的相对湿度范围内,共振吸收峰可以发生红移或蓝移。在共振附近的某些波长处,吸收幅度几乎呈线性减小,可以用作传感信号。仿真研究结果与实验数据吻合良好。这种薄膜结构的光谱和时间灵敏度归因于聚乙烯醇层厚度的变化,聚乙烯醇层通过吸收水分子而膨胀
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