Yang Jianchun, Che Xin, Shen Rui, Wang Can, Li Xueming, Chen Weimin
Opt Express. 2017 Aug 21;25(17):20258-20267. doi: 10.1364/OE.25.020258.
A high-sensitivity photonic crystal fiber long-period grating (PCF-LPG) methane sensor with cryptophane-A-6Me absorbed on a poly(acrylic acid)-carbon nanotubes/ polypropylene amine hydrochloride (PAA-CNTs/PAH) nanofilm was investigated. The sensing film was coated onto the internal surface of a photonic crystal fiber cladding air holes by an electrostatic self-assembly technique. Based on a finite element method and the coupled local-mode theory, the effects of the sensing film's refractive index (RI) and thickness on the resonant wavelength were theoretically and numerically analyzed. When the sensing film RI decreases from 1.55 to 1.53, and the thickness increases from 100 nm to 200 nm, the resonant wavelength has a blue shift. A higher RI sensitivity with 1.075 × 10 nm RIU is observed for the film thickness of 200 nm. The PCF-LPG methane sensor was fabricated by a pressurized injection method. The sensing experimental result shows that the resonant wavelength of the transmission spectra has a blue shift when the methane concentration increases from 0.0% to 3.5% by volume. The sensor has a good sensitivity of 1.078 nm% and a low detection limit of 0.18% for a film thickness of 210 nm.
研究了一种高灵敏度光子晶体光纤长周期光栅(PCF-LPG)甲烷传感器,其传感膜为吸附有隐藻素-A-6Me的聚(丙烯酸)-碳纳米管/聚丙胺盐酸盐(PAA-CNTs/PAH)纳米膜。通过静电自组装技术将传感膜涂覆在光子晶体光纤包层气孔的内表面。基于有限元方法和耦合局部模式理论,从理论和数值上分析了传感膜的折射率(RI)和厚度对谐振波长的影响。当传感膜的RI从1.55降至1.53且厚度从100 nm增加到200 nm时,谐振波长发生蓝移。对于200 nm的膜厚度,观察到具有1.075×10 nm/RIU的更高RI灵敏度。采用加压注入法制备了PCF-LPG甲烷传感器。传感实验结果表明,当甲烷体积浓度从0.0%增加到3.5%时,透射光谱的谐振波长发生蓝移。对于210 nm的膜厚度,该传感器具有1.078 nm/%的良好灵敏度和0.18%的低检测限。