Wen Hsin-Yi, Hsu Hsiang-Cheng, Tsai Yao-Tung, Feng Wen-Kai, Lin Chih-Lang, Chiang Chia-Chin
Department of Green Energy and Environmental Resources, Chang Jung Christian University, Tainan City 71101, Taiwan.
Department of Mechanical Engineering, National Kaohsiung University of Science Technology, Kaohsiung 807618, Taiwan.
Polymers (Basel). 2021 Aug 12;13(16):2696. doi: 10.3390/polym13162696.
The influence of the bending radius on the sensitivity of the graphene quantum dots (GQDs)-coated probe is experimentally investigated for a U-shaped probe. The fiber is bent into a U shape using the optic fiber flame heating method, and the optic fiber is enclosed in a glass tube to increase the stability of the probe. The surface of the U-shaped optical fiber was coated with electrospun fibers formed via electrospinning. Polymer materials doped with GQDs are applied to U-shaped optical fiber as humidity sensors. Graphene quantum dot nanofibers on the U-shaped optical fiber sensor to form a network structure of graphene quantum dots U-shape fiber sensor (GQDUS). The polymer network structure absorbs water molecules, which in turn affects the bending radius of the optical fiber, and changes the optical fiber spectrum. Graphene quantum dots provide optical enhancement benefits, which in turn increase the sensitivity of fiber optic sensors. The spectra monitoring system consists of an optical spectrum analyzer (OSA) and an amplified spontaneous emission (ASE). This system can be used to detect humidity changes between 20% RH and 80% RH in the chamber. Our results indicate promising applications for quantum dots probe sensors from electrospun nanofibers increasing sensitive environmental monitoring. As such, it could be of substantial value in optical sensors detection.
针对U形探头,通过实验研究了弯曲半径对涂覆有石墨烯量子点(GQDs)的探头灵敏度的影响。使用光纤火焰加热法将光纤弯曲成U形,并将光纤封装在玻璃管中以提高探头的稳定性。U形光纤的表面涂覆有通过静电纺丝形成的静电纺丝纤维。将掺杂有GQDs的聚合物材料应用于U形光纤作为湿度传感器。U形光纤传感器上的石墨烯量子点纳米纤维形成了石墨烯量子点U形纤维传感器(GQDUS)的网络结构。聚合物网络结构吸收水分子,这反过来又会影响光纤的弯曲半径,并改变光纤光谱。石墨烯量子点提供光学增强效果,进而提高光纤传感器的灵敏度。光谱监测系统由光谱分析仪(OSA)和放大自发辐射(ASE)组成。该系统可用于检测腔室内20%相对湿度至80%相对湿度之间的湿度变化。我们的结果表明,静电纺丝纳米纤维制成的量子点探头传感器在增强环境监测方面具有广阔的应用前景。因此,它在光学传感器检测中可能具有重要价值。