Zhang Jingle, Fu Haiwei, Ding Jijun, Zhang Min, Zhu Yi
Appl Opt. 2017 Nov 1;56(31):8828-8831. doi: 10.1364/AO.56.008828.
A graphene-oxide-coated interferometric microfiber-sensor-based polarization-maintaining optical fiber is proposed for highly sensitive detecting for ethanol vapor concentration at room temperature in this paper. The strong sensing capability of the sensor to detect the concentration of ethanol vapor is demonstrated, taking advantage of the evanescent field enhancement and gas absorption of a graphene-oxide-coated microfiber. The transmission spectrum of the sensor varies with concentrations of ethanol vapor, and the redshift of the transmission spectrum has been analyzed for the concentration range from 0 to 80 ppm with sensitivity as high as 0.138 nm/ppm. The coated graphene oxide layer induces the evanescent field enhancement and gas selective adsorption, which improves sensitivity and selectivity of the microfiber gas sensor for ethanol vapor detection.
本文提出了一种基于氧化石墨烯包覆干涉式微光纤传感器的保偏光纤,用于在室温下对乙醇蒸汽浓度进行高灵敏度检测。利用氧化石墨烯包覆微光纤的倏逝场增强和气体吸收特性,证明了该传感器对乙醇蒸汽浓度具有很强的传感能力。传感器的透射光谱随乙醇蒸汽浓度的变化而变化,分析了透射光谱在0至80 ppm浓度范围内的红移情况,灵敏度高达0.138 nm/ppm。包覆的氧化石墨烯层可实现倏逝场增强和气体选择性吸附,提高了微光纤气体传感器对乙醇蒸汽检测的灵敏度和选择性。