Carrillo-Betancourt Rodolfo A, López-Camero A Darío, Hernández-Cordero Juan
Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México, A.P. 70-360, Ciudad de México 04510, Mexico.
Polymers (Basel). 2023 Jan 18;15(3):505. doi: 10.3390/polym15030505.
Optical fiber sensors incorporating luminescent materials are useful for detecting physical parameters and biochemical species. Fluorescent materials integrated on the tips of optical fibers, for example, provide a means to perform fluorescence thermometry while monitoring the intensity or the spectral variations of the fluorescence signal. Similarly, certain molecules can be tracked by monitoring their characteristic emission in the UV wavelength range. A key element for these sensing approaches is the luminescent composite, which may be obtained upon allocating luminescent nanomaterials in glass or polymer hosts. In this work, we explore the fluorescence features of two composites incorporating lanthanide-doped fluorescent powders using polydimethylsiloxane (PDMS) as a host. The composites are obtained by a simple mixing procedure and can be subsequently deposited onto the end faces of optical fibers via dip coating or molding. Whereas one of the composites has shown to be useful for the fabrication of fiber optic temperature sensors, the other shows promising result for detection of UV radiation. The performance of both composites is first evaluated for the fabrication of membranes by examining features such as fluorescent stability. We further explore the influence of parameters such as particle concentration and density on the fluorescence features of the polymer blends. Finally, we demonstrate the incorporation of these PDMS fluorescent composites onto optical fibers and evaluate their sensing capabilities.
包含发光材料的光纤传感器可用于检测物理参数和生化物质。例如,集成在光纤尖端的荧光材料提供了一种在监测荧光信号强度或光谱变化的同时进行荧光测温的方法。同样,某些分子可以通过监测其在紫外波长范围内的特征发射来追踪。这些传感方法的一个关键要素是发光复合材料,它可以通过将发光纳米材料分配到玻璃或聚合物基质中获得。在这项工作中,我们探索了两种以聚二甲基硅氧烷(PDMS)为基质、包含镧系掺杂荧光粉的复合材料的荧光特性。这些复合材料通过简单的混合程序获得,随后可以通过浸涂或模塑沉积在光纤端面上。其中一种复合材料已被证明可用于制造光纤温度传感器,另一种在检测紫外线辐射方面显示出有前景的结果。首先通过检查诸如荧光稳定性等特征来评估这两种复合材料用于制造膜的性能。我们进一步探讨了诸如颗粒浓度和密度等参数对聚合物共混物荧光特性的影响。最后,我们展示了将这些PDMS荧光复合材料集成到光纤上并评估了它们的传感能力。