Li Jinze, Lai Min, Zhang Hengheng, Song Huatang, He Jixiang, Chen Yuxin, Qi Yutong, Zhu Bao, Ma Yan, Liu Bo
Appl Opt. 2023 Feb 20;62(6):1575-1581. doi: 10.1364/AO.482668.
Employing functional and structured thin films on fiber optic sensors has tremendously improved capabilities in humidity sensing applications. In this paper, we demonstrate fabrication of a fiber optic evanescent wave humidity sensor based on /porous polymethyl methacrylate (PMMA) thin films. With the exposure to moisture, /porous PMMA thin films absorb water molecules. The refractive index and absorption coefficient of thin films change with ambient humidity, resulting in modulation of the light intensity transmitted in fiber. A good linearity is determined between the logarithm of output light intensity and relative humidity (RH). An optimal average sensitivity of 188.3 lux/%RH is achieved with an increase of 11.7 fold in the RH range of 5% to 95%. The response and recovery times are 8 s and 23 s, respectively. Furthermore, the sensor exhibits low hysteresis, and excellent stability and repeatability.
在光纤传感器上采用功能性和结构化薄膜极大地提升了湿度传感应用的能力。在本文中,我们展示了一种基于多孔聚甲基丙烯酸甲酯(PMMA)薄膜的光纤倏逝波湿度传感器的制造方法。随着暴露于湿气中,多孔PMMA薄膜吸收水分子。薄膜的折射率和吸收系数随环境湿度变化,导致光纤中传输的光强度发生调制。在输出光强度的对数与相对湿度(RH)之间确定了良好的线性关系。在5%至95%的RH范围内,随着RH增加11.7倍,实现了188.3 lux/%RH的最佳平均灵敏度。响应时间和恢复时间分别为8秒和23秒。此外,该传感器具有低滞后性以及出色的稳定性和重复性。