Yung-Da ChiuChao-Wei WuChia‐Chin Chiang
In this study, we propose a tilted fiber Bragg grating (TFBG) humidity sensor fabricated using the phase mask method to produce a TFBG that was then etched with five different diameters of 20, 35, 50, 55 and 60 μm, after which piezoelectric inkjet technology was used to coat the grating with graphene oxide. According to the experimental results, the diameter of 20 μm yielded the best sensitivity. In addition, the experimental results showed that the wavelength sensitivity was −0.01 nm/%RH and the linearity was 0.996. Furthermore, the measurement results showed that when the relative humidity was increased, the refractive index of the sensor was decreased, meaning that the TFBG cladding mode spectrum wavelength was shifted. Therefore, the proposed graphene oxide film TFBG humidity sensor has good potential to be an effective relative humidity monitor.
Youqing WangChangyu ShenWeimin LouFengying ShentuChuan‐Jian ZhongXinyong DongLimin Tong
Yinping MiaoBo LiuHao ZhangYuan LiHaibin ZhouHua SunWeihua ZhangQida Zhao
Lun-Kai ChengArjen BoersmaRob Jansen
Ponnusamy Thillai ArasuA. S. M. NoorA. A. ShabanehMohd Hanif YaacobHong Ngee LimMohd Adzir Mahdi
黄梦 Huang Meng顾昌晟 Gu Changsheng孙兵 Sun Bing杨从浩 Yang Conghao余柯涵 Yu Kehan张祖兴 Zhang Zuxing