Tian Meng, Huang Yanhua, Li Cong, Lv Min
Opt Express. 2020 Aug 31;28(18):26395-26406. doi: 10.1364/OE.402648.
A high-performance relative humidity (RH) sensor based on a micro-nano fiber Bragg grating (MFBG) coated with a graphene oxide (GO) film is fabricated with a chemical corrosion technique and optically driven deposition method. The diameter of MFBG is corroded to about 12 µm. GO film with the thickness of about 2.5 µm is uniformly coated on the MFBG surface. The change of RH results in the change of refractive index (RI) of GO film, that is, the change of effective RI of MFBG, which will at last result in the shift of reflected wavelength. The experimental results show that there is a good linear relationship between the wavelength shift of MFBG and RH changes in the RH range of 20% to 80% at constant temperature. The sensitivity is 17.361 pm/RH% and the linear correlation coefficient is 99.89%. In order to eliminate the impact of temperature cross sensitivity, the relative measurement is adopted and similar results are obtained. The average response and recovery times are measured to be about 3.2 s and 8.3 s, respectively. The sensor has the advantages of long stability, reversibility, quick response and simple structure. With such high performance, it can be used in widespread potential fields, such as biology, chemical processing and food processing.
采用化学腐蚀技术和光驱动沉积方法制备了一种基于涂覆有氧化石墨烯(GO)薄膜的微纳光纤布拉格光栅(MFBG)的高性能相对湿度(RH)传感器。MFBG的直径被腐蚀至约12μm。厚度约为2.5μm的GO薄膜均匀地涂覆在MFBG表面。RH的变化导致GO薄膜的折射率(RI)发生变化,即MFBG的有效RI发生变化,最终将导致反射波长的偏移。实验结果表明,在恒温条件下,MFBG的波长偏移与20%至80%RH范围内的RH变化之间存在良好的线性关系。灵敏度为17.361pm/RH%,线性相关系数为99.89%。为了消除温度交叉敏感性的影响,采用相对测量并获得了类似的结果。测量得到的平均响应时间和恢复时间分别约为3.2s和8.3s。该传感器具有稳定性好、可逆性强、响应快和结构简单等优点。凭借如此高性能,它可用于广泛的潜在领域,如生物学、化学加工和食品加工。