纳米材料涂层蚀刻光纤布拉格光栅传感器

B. N. Shivananju, Parama Pal, S. Yamdagni, M. Varma, S. Asokan
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引用次数: 1

摘要

多参数传感是实现传感选择性的一种方法,其形式是由多个受体功能化的传感器阵列。我们展示了一种基于蚀刻布拉格光栅的新型光纤传感器,其核心涂覆有聚电解质、碳纳米管和聚烯丙胺-氨基-碳纳米管等材料,可用于检测气体、pH值、湿度、折射率、蛋白质和其他生物分子。在这种方法中,目标分子与蚀刻FBG的功能化核心相互作用,导致光纤核心有效折射率的变化,导致随后的布拉格波长偏移。实验数据表明,波长位移随目标分析物的浓度呈线性变化。除了具有可重复性和可重复性外,该技术还具有快速、紧凑和高灵敏度的特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanomaterial-coated etched fiber Bragg grating sensors
Multi-parameter sensing in the form of sensor arrays functionalized with multiple receptors, is an approach for attaining selectivity in sensing. We have demonstrated a novel fiber sensor based on an etched Bragg grating whose core is coated with materials such as polyelectrolytes, carbon nanotubes, and polyallylamine-amino-carbon nanotubes, and can be used for detecting gases, pH, humidity, refractive index, proteins and other biomolecules. In this approach, the target molecules interact with the functionalized core of the etched FBG resulting in a change in the effective refractive index of the fiber core leading to a subsequent shift in the Bragg wavelength. The experimental data shows that the wavelength shift varies linearly with the concentration of the target analyte. Besides being reproducible and repeatable, the technique is fast, compact, and highly sensitive.
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