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Optical Fiber Sensors Based on Polymeric Sensitive Coatings

机译:基于聚合物敏感涂层的光纤传感器

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摘要

Polymer technology is one of the fastest growing fields of contemporary research due to the possibility of using a wide variety of synthetic chemical routes for obtaining a polymeric network with a well-defined structure, resulting in materials with outstanding macroscopic properties. Surface engineering techniques based on the implementation of polymeric structures can be used as an interesting tool for the design of materials with functional properties. In this sense, the use of fabrication techniques for the design of nanostructured polymeric coatings is showing an important growth due to the intrinsic advantages of controlling the structure at a nanoscale level because physical, chemical, or optical properties can be considerably improved in comparison with the bulk materials. In addition, the presence of these sensitive polymeric coatings on optical fiber is a hot topic in the scientific community for its implementation in different market niches because a wide variety of parameters can be perfectly measured with a high selectivity, sensitivity, and fast response time. In this work, the two main roles that a polymeric sensitive matrix can play on an optical fiber for sensing applications are evaluated. In a first section, the polymers are used as a solid support for the immobilization of specific sensitive element, whereas in the second section the polymeric matrix is used as the chemical transducer itself. Additionally, potential applications of the optical fiber sensors in fields as diverse as biology, chemistry, engineering, environmental, industry or medicine will be presented in concordance with these two main roles of the polymeric sensitive matrices.
机译:聚合物技术是当代研究发展最快的领域之一,因为它有可能使用多种合成化学途径来获得结构明确的聚合物网络,从而使材料具有出色的宏观性能。基于聚合物结构实施的表面工程技术可用作设计具有功能特性的材料的有趣工具。从这个意义上讲,由于在纳米级水平上控制结构的内在优势,使用制造技术来设计纳米结构聚合物涂层正显示出重要的增长,因为与之相比,其物理,化学或光学性能得到了极大的改善。散装材料。此外,光纤上这些敏感的聚合物涂层的存在是科学界的热门话题,因为可以在高选择性,高灵敏度和快速响应时间下完美地测量各种参数,因此可以在不同的市场领域中实现。在这项工作中,评估了聚合物敏感基质可以在光纤上用于传感应用的两个主要作用。在第一部分中,聚合物被用作固定特定敏感元件的固体载体,而在第二部分中,聚合物基质被用作化学传感器本身。另外,将根据聚合物敏感基质的这两个主要作用,介绍光纤传感器在生物学,化学,工程,环境,工业或医学等领域的潜在应用。

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