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Optofluidic vapor sensing with free-space coupled 2D photonic crystal slabs

机译:具有自由空间耦合2D光子晶体平板的光流体蒸气感测

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摘要

We report here a compact vapor sensor based on polymer coated two-dimensional (2D) defect-free photonic crystal slabs (PCS). The sensing mechanism is based on the resonance spectral shift associated with the Fano resonance mode in the PCS due to the vapor molecule adsorption and desorption induced changes in both polymer thickness and polymer refractive index (RI). Sensitivity due to RI and thickness change were theoretically investigated respectively. With three different thicknesses of OV-101 polymer coating, sensitivity and response time were experimentally evaluated for hexane and ethanol vapors. The polymer demonstrated roughly four times higher sensitivity towards the hexane vapor than ethanol vapor. The PCS sensor with thicker polymer coating showed higher sensitivity to both hexane and ethanol vapors but exhibiting longer response time.
机译:我们在这里报告基于聚合物涂层的二维(2D)无缺陷光子晶体平板(PCS)的紧凑型蒸汽传感器。感测机制基于与PCS中的Fano共振模式相关的共振光谱偏移,这归因于气相分子吸附和解吸引起的聚合物厚度和聚合物折射率(RI)的变化。理论上研究了由于RI和厚度变化引起的灵敏度。使用三种不同厚度的OV-101聚合物涂层,通过实验评估了己烷和乙醇蒸气的灵敏度和响应时间。该聚合物对己烷蒸气的敏感性大约是乙醇蒸气的四倍。具有较厚聚合物涂层的PCS传感器对己烷和乙醇蒸气均显示出较高的灵敏度,但响应时间更长。

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