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Sensitive hydrogen sensor based on selectively infiltrated photonic crystal fiber with Pt-loaded WO3 coating

机译:基于选择性渗透的光子晶体光纤和Pt负载WO3涂层的灵敏氢传感器

摘要

A sensitive hydrogen sensing device based on a selectively infiltrated photonic crystal fiber (PCF) coated with Pt-loaded WO3 is demonstrated. With Pt-loaded WO3 coating acting as the catalytic layer, hydrogen undergoes an exothermic reaction with oxygen and releases heat when the device is exposed to gas mixtures of air and hydrogen, which induces local temperature change in the PCF and hence leads to the resonant wavelength shift of the proposed device. The maximum wavelength shift of 98.5 nm is obtained with a 10-mm-long infiltrated PCF for 4% (v/v) H-2 concentration, and a hydrogen sensitivity of 32.3 nm/% (v/v) H-2 is achieved within the range of 1%-4% (v/v) H-2 in air.
机译:展示了一种基于选择性渗透的光子晶体光纤(PCF)的敏感氢感测设备,该光纤涂覆有载有Pt的WO3。使用负载Pt的WO3涂层作为催化层,当器件暴露于空气和氢气的混合气体中时,氢气与氧气发生放热反应并释放热量,这会引起PCF中的局部温度变化,从而导致共振波长拟议设备的转移。对于4%(v / v)H-2浓度,使用10毫米长的浸润PCF,可获得98.5 nm的最大波长偏移,并且对H-2的氢敏感性为32.3 nm /%(v / v)空气中H-2含量在1%-4%(v / v)范围内。

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