NanoPRO START S.R.L., Oltenitei, No. 388, District 4, 041337 Bucharest, Romania.
Department of Electronic Engineering, Universidad Técnica Federico Santa María, 2390123 Valparaíso, Chile.
Sensors (Basel). 2021 Jan 21;21(3):718. doi: 10.3390/s21030718.
Distributed chemical sensing is demonstrated using standard acrylate coated optical fibers. Swelling of the polymer coating induces strain in the fiber's silica core provoking a local refractive index change which is detectable all along an optical fiber by advanced distributed sensing techniques. Thermal effects can be discriminated from strain using uncoated fiber segments, leading to more accurate strain readings. The concept has been validated by measuring strain responses of various aqueous and organic solvents and different chain length alkanes and blends thereof. Although demonstrated on a short range of two meters using optical frequency-domain reflectometry, the technique can be applied to many kilometer-long fiber installations. Low-cost and insensitive to corrosion and electromagnetic radiation, along with the possibility to interrogate thousands of independent measurement points along a single optical fiber, this novel technique is likely to find applications in environmental monitoring, food analysis, agriculture, water quality monitoring, or medical diagnostics.
使用标准的丙烯酸酯涂层光纤实现分布式化学传感。聚合物涂层的膨胀会在光纤的二氧化硅芯中产生应变,从而引起局部折射率变化,通过先进的分布式传感技术可以在整个光纤上进行检测。使用未涂层的光纤段可以区分热效应和应变,从而获得更准确的应变读数。该概念已通过测量各种水溶液和有机溶剂以及不同链长烷烃及其混合物的应变响应得到验证。尽管该技术使用光频域反射计在两米的短距离内进行了演示,但它可以应用于数公里长的光纤安装中。这种新技术具有低成本、对腐蚀和电磁辐射不敏感的特点,并且可以在单根光纤上检测数千个独立的测量点,因此很可能在环境监测、食品分析、农业、水质监测或医疗诊断等领域得到应用。