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Functionalized Microstructured Optical Fibers: Materials Methods Applications

机译:功能化微结构光纤:材料方法应用

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摘要

Microstructured optical fiber-based sensors (MOF) have been widely developed finding numerous applications in various fields of photonics, biotechnology, and medicine. High sensitivity to the refractive index variation, arising from the strong interaction between a guided mode and an analyte in the test, makes MOF-based sensors ideal candidates for chemical and biochemical analysis of solutions with small volume and low concentration. Here, we review the modern techniques used for the modification of the fiber’s structure, which leads to an enhanced detection sensitivity, as well as the surface functionalization processes used for selective adsorption of target molecules. Novel functionalized MOF-based devices possessing these unique properties, emphasize the potential applications for fiber optics in the field of modern biophotonics, such as remote sensing, thermography, refractometric measurements of biological liquids, detection of cancer proteins, and concentration analysis. In this work, we discuss the approaches used for the functionalization of MOFs, with a focus on potential applications of the produced structures.
机译:基于微结构光纤的传感器(MOF)已得到广泛开发,在光子学,生物技术和医学的各个领域中发现了众多应用。在测试中,由于引导模式与分析物之间的强相互作用而产生的对折射率变化的高灵敏度,使基于MOF的传感器成为小体积和低浓度溶液化学和生化分析的理想选择。在这里,我们回顾了用于修改纤维结构的现代技术,这种技术可提高检测灵敏度,以及用于选择性吸附目标分子的表面功能化过程。具有这些独特特性的基于功能化MOF的新型设备强调了光纤在现代生物光子学领域的潜在应用,例如遥感,热成像,生物液体的折光率测量,癌症蛋白检测和浓度分析。在这项工作中,我们将讨论用于MOF功能化的方法,重点是所生产结构的潜在应用。

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