Wang Ning, Tian Wenhao, Zhang Haosheng, Yu Xiaodan, Yin Xiaolei, Du Yonggang, Li Dailin
College of Science, China University of Petroleum (Huadong), Qingdao 266580, China.
Sensors (Basel). 2021 Jan 26;21(3):806. doi: 10.3390/s21030806.
An easily fabricated Fabry-Perot optical fiber humidity sensor with high performance was presented by filling Graphene Quantum Dots (GQDs) into the Fabry-Perot resonator, which consists of two common single mode optical fibers. The relative humidity sensing performance was experimentally investigated by an interference spectrum drift between 11 %RH to 85 %RH. 0.567 nm/%RH sensitivity and 0.99917 linear correlation were found in experiments that showed high sensitivity, good and wide-range linear responding. Meanwhile, its good responding repeatability was demonstrated by two circle tests with increasing and decreasing relative humidity. For investigating the measurement influence caused by a temperature jitter, the temperature responding was experimentally investigated, which showed its linear responding with 0.033 nm/°C sensitivity. The results demonstrate the humidity sensitivity is greatly higher than the temperature sensitivity. The wavelength shift influence is 0.0198 nm with 0.6 °C max temperature jitter in the experiment, which can be ignored in humidity experiments. The fast-dynamic responses at typical humidity were demonstrated in experiments, with 5.5 s responding time and 8.5 s recovering time. The sensors with different cavity lengths were also investigated for their humidity response. All sensors gave good linear responding and high sensitivity. In addition, the relation curve between cavity length and response sensitivity also had good linearity. The combination of GQDs and single mode optical fibers showed easy fabrication and good performance for an optical fiber relative humidity sensor.
通过将石墨烯量子点(GQDs)填充到由两根普通单模光纤组成的法布里 - 珀罗谐振器中,提出了一种易于制造的高性能法布里 - 珀罗光纤湿度传感器。通过11 %RH至85 %RH之间的干涉光谱漂移对相对湿度传感性能进行了实验研究。实验发现灵敏度为0.567 nm/%RH,线性相关系数为0.99917,具有高灵敏度、良好且宽范围的线性响应。同时,通过相对湿度上升和下降的两个循环测试证明了其良好的响应重复性。为了研究温度抖动引起的测量影响,对温度响应进行了实验研究,结果表明其线性响应灵敏度为0.033 nm/°C。结果表明湿度灵敏度远高于温度灵敏度。实验中最大温度抖动0.6 °C时波长偏移影响为0.0198 nm,在湿度实验中可忽略不计。实验证明了在典型湿度下的快速动态响应,响应时间为5.5 s,恢复时间为8.5 s。还研究了不同腔长的传感器的湿度响应。所有传感器都具有良好的线性响应和高灵敏度。此外,腔长与响应灵敏度之间的关系曲线也具有良好的线性。GQDs与单模光纤的结合显示出光纤相对湿度传感器易于制造且性能良好。