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首页> 外文期刊>Journal of Lightwave Technology >Coated long-period fiber gratings as high-sensitivity optochemical sensors
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Coated long-period fiber gratings as high-sensitivity optochemical sensors

机译:带涂层的长周期光纤光栅作为高灵敏度光化学传感器

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In this paper, the numerical and the experimental analyses of coated long-period fiber gratings (LPFGs) as a high-sensitivity optochemical sensor are presented. The proposed structure relies on LPFGs coated with nanoscale high refractive index chemical-sensitive overlays. The deposition of overlays with refractive index higher than the cladding one leads to a modification of the cladding-mode distribution. If the overlay features are properly chosen, a strong field enhancement within the overlay occurs, leading to an excellent sensitivity of the cladding-mode distribution to the coating properties. The effects of overlay thickness and cladding-mode order on sensor performances have been numerically and experimentally investigated. In order to provide a high-sensitivity and species-specific optochemical sensor, this mechanism has been proved with nanoscale overlays of syndiotactic polystyrene (sPS) in the nanoporous crystalline /spl delta/ form. The sensitive material has been chosen in light of its selectivity and high sorption properties towards chlorinated and aromatic compounds. Sensor probes were prepared by using dip-coating technique and an adequate procedure to obtain the /spl delta/-form sPS. Experimental demonstration of the sensor capability to perform subparts-per-million detection of chloroform in water at room temperature is also reported.
机译:本文介绍了作为高灵敏度光化学传感器的涂层长周期光纤光栅(LPFG)的数值和实验分析。所提出的结构依赖于涂有纳米级高折射率化学敏感覆盖层的LPFG。折射率高于包层的覆盖层的沉积导致包层模式分布的改变。如果正确选择了覆盖层特征,则覆盖层内会发生强电场增强,从而导致包层模式分布对涂层特性的出色敏感性。数值和实验研究了覆盖层厚度和包层模式顺序对传感器性能的影响。为了提供高灵敏度和特定物种的光化学传感器,已通过以纳米多孔晶体/ spl delta /形式的间规聚苯乙烯(sPS)的纳米级覆盖层证明了这种机理。选择敏感材料是基于其对氯化物和芳族化合物的选择性和高吸附性能。通过使用浸涂技术和适当的程序来制备传感器探针,以获得/ spl delta /-形式的sPS。还报告了传感器在室温下执行百万分之几的氯仿检测​​能力的实验证明。

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