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Overview of Recent Advances in the Design of Plasmonic Fiber-Optic Biosensors

机译:最近近期纤维光纤生物传感器设计的概述

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摘要

Plasmonic fiber-optic biosensors combine the flexibility and compactness of optical fibers and high sensitivity of nanomaterials to their surrounding medium, to detect biological species such as cells, proteins, and DNA. Due to their small size, accuracy, low cost, and possibility of remote and distributed sensing, plasmonic fiber-optic biosensors are promising alternatives to traditional methods for biomolecule detection, and can result in significant advances in clinical diagnostics, drug discovery, food process control, disease, and environmental monitoring. In this review article, we overview the key plasmonic fiber-optic biosensing design concepts, including geometries based on conventional optical fibers like unclad, side-polished, tapered, and U-shaped fiber designs, and geometries based on specialty optical fibers, such as photonic crystal fibers and tilted fiber Bragg gratings. The review will be of benefit to both engineers in the field of optical fiber technology and scientists in the fields of biosensing.
机译:等离子体纤维 - 光学生物传感器将光纤的柔韧性和紧凑性与纳米材料到周围介质的高灵敏度结合在一起,以检测细胞,蛋白质和DNA等生物物种。由于它们的体积小,精度,低成本和远程和分布式感应的可能性,等离子体光纤生物传感器是对生物分子检测的传统方法的有前途的替代品,并且可以导致临床诊断,药物发现,食品过程控制的显着进展。 ,疾病和环境监测。在本文中,我们概述了关键等离子体光纤生物传感设计概念,包括基于传统光纤的几何形状,如未来生的,侧抛光,锥形和U形光纤设计,以及基于特种光纤的几何形状,例如光子晶纤维和倾斜纤维布拉格光栅。审查将有利于光纤技术领域的工程师和生物传感领域的科学家。

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