Huang Xixi, Lai Min, Zhao Ziming, Yang Yang, Li Jinze, Song Huatang, He Jixiang, Ma Yan, Liu Bo
Appl Opt. 2021 Mar 10;60(8):2158-2165. doi: 10.1364/AO.416286.
A / bilayer thin-film-based fiber optic humidity sensor was fabricated via a modified dip coating process with enhanced sensitivity. film was coated on the surface of the fiber core, followed by deposition of the layer on . The relative humidity (RH) is measured by modulation in intensity of the transmitted laser at room temperature. The optical fiber humidity sensor based on / film shows two-segmented linearity in measurement with sensitivities of 5.35 and 1.94 µW/% RH at 15%-50% RH and 50%-95% RH, respectively. The response time and recovery time are 25 s and 50 s, respectively. To our knowledge, the superior response time and recovery time of the sensor in our study were achieved over those fiber optic humidity sensors reported with modulation in intensity. Furthermore, this fiber optic humidity sensor has a good reproducibility and long-term stability. The sensing mechanism is attributed to effects of moisture on the refractive index and the light absorption coefficient of film and modulation in the transmission characteristic of evanescent waves in the optical fiber.
通过改进的浸涂工艺制备了一种基于A/双层薄膜的光纤湿度传感器,其灵敏度得到了提高。在光纤芯表面涂覆薄膜,然后在其上沉积层。在室温下,通过调制透射激光的强度来测量相对湿度(RH)。基于A/薄膜的光纤湿度传感器在测量中呈现两段线性,在15%-50%RH和50%-95%RH时的灵敏度分别为5.35和1.94μW/%RH。响应时间和恢复时间分别为25秒和50秒。据我们所知,与报道的强度调制型光纤湿度传感器相比,我们研究中的传感器具有更优异的响应时间和恢复时间。此外,这种光纤湿度传感器具有良好的重复性和长期稳定性。传感机制归因于水分对A薄膜的折射率和光吸收系数的影响以及光纤中倏逝波传输特性的调制。