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Humidity sensing based on nanoporous polymeric photonic crystals

机译:基于纳米多孔聚合物光子晶体的湿度感测

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摘要

In this work, an optical humidity sensor based on a nanoporous polymeric photonic crystal (PC) is demonstrated. The PC sensing structure is created by combining a holographic interference patterning technique with a modified holographic polymer-dispersed liquid crystal system. Changes in relative humidity (RH) induce the modification of the refractive index contrast between the nanoporous and nonporous regions, and thus the transmittance and bandgap position, of the PC structure. For a PC structure with 30% porosity and a grating spacing of 220 nm, a change in the RH from 40% to 95% at 34 ℃ results in a redshift of 43 nm in the central wavelength at the PC bandgap and an increase from 12% to 87% in the relative transmittance at λ = 600 nm. Other performance analyses have shown that the nanoporous polymeric PC-based humidity sensor is highly stable and reproducible, exhibits minimal hysteresis, and responds relatively fast.
机译:在这项工作中,展示了一种基于纳米多孔聚合物光子晶体(PC)的光学湿度传感器。 PC感测结构是通过将全息干涉图案化技术与改良的全息聚合物分散的液晶系统结合而创建的。相对湿度(RH)的变化会引起纳米孔和无孔区域之间折射率对比的改变,从而引起PC结构的透射率和带隙位置的改变。对于具有30%孔隙率和220 nm光栅间距的PC结构,在34℃下RH从40%变为95%导致PC带隙中心波长的红移为43 nm并从12增加λ= 600 nm时的相对透射率从%到87%。其他性能分析表明,基于纳米孔聚合物PC的湿度传感器具有很高的稳定性和可重复性,具有最小的滞后性,并且响应速度相对较快。

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