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Thinned-Cladding Zeolite coated Long Period Fiber Grating Chemical Sensor

机译:薄包层沸石涂层长周期光纤光栅化学传感器

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This study proposes a thinned-cladding zeolite coated long period fiber grating (LPFG) chemical sensor. The cladding outside the grating zone is etched by hydrofluoric (HF) acid, and then the zeolite film is coated on the thinned grating. The sensitivity characteristics of the LPFG to different external refractive indices are investigated. By etching cladding, the resonant wavelength shifts towards the longer wavelength (red shift) while the attenuation band depth is increased. In addition, with very large surface-to-mass ratio, zeolitic pores can efficiently adsorb molecules from the ambient for highly sensitive detections. The adsorbed analyte molecules are collected and aligned in nanoscale zeolite pores. This leads to changes in the refractive index of zeolite coating, which in turn, causes resonant wavelength shift. After zeolite coating, the resonant wavelength shifts towards the shorter wavelength (blue shift) and the sensitivity to external refractive index is enhanced. The resonant wavelength of uncoated LPFG is 1563.1 nm in air and 1560.5 nm in water, with the wavelength shift of 2.6 nm, while the resonant wavelength of zeolite coated LPFG is 1543.2 nm in air. Decreases in cladding diameters and ziolite coating can effectively enhance the refractive index sensitivity of LPFG chemical sensor.
机译:这项研究提出了一种薄覆层沸石涂层的长周期光纤光栅(LPFG)化学传感器。用氢氟酸(HF)蚀刻光栅区域外部的包层,然后将沸石膜涂覆在变薄的光栅上。研究了LPFG对不同外部折射率的灵敏度特性。通过蚀刻包层,谐振波长向更长的波长偏移(红移),而衰减带的深度增加了。另外,具有非常大的表面质量比,沸石孔可以有效地从周围环境吸收分子,从而实现高度灵敏的检测。收集被吸附的分析物分子,并在纳米级沸石孔中排列。这导致沸石涂层的折射率变化,这又引起共振波长偏移。沸石涂覆后,共振波长向较短波长移动(蓝移),并且增强了对外部折射率的敏感性。未涂覆的LPFG的共振波长在空气中为1563.1nm,在水中为1560.5nm,波长漂移为2.6nm,而沸石涂覆的LPFG的共振波长在空气中为1543.2nm。减小包层直径和硅藻土涂层可以有效提高LPFG化学传感器的折射率灵敏度。

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