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Liquid Cladding Mediated Optical Fiber Sensors for Copper Ion Detection

机译:用于铜离子检测的液态熔覆介质光纤传感器

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摘要

We present a label-free optical fiber based sensor device to detect copper ions (Cu2+) in water. A multimode optical fiber, with its polymer cladding removed along a 1-cm length, is used for the optical sensor head, where the injected Cu2+ in the liquid phase acts as a liquid cladding for the optical mode. The various Cu2+ concentrations modulate the numerical aperture (NA) of the liquid cladding waveguide part. The degree of NA mismatch between the liquid cladding and solid cladding guided parts gives rise to an optical power transmittance change, forming the sensing principle. The presented liquid cladding fiber sensor exhibits a minimum resolvable refractive index of 2.48 × 10−6. For Cu2+ detection, we functionalize the sensor head surface (fiber core) using chitosan conjugated ethylenediaminetetraacetic acid (EDTA) which captures Cu2+ effectively due to the enhanced chelating effects. We obtain a limit of detection of Cu2+ of 1.62 nM (104 ppt), which is significantly lower than the tolerable level in drinking water (~30 µM), and achieve a dynamic range of 1 mM. The simple structure of the sensor head and the sensing system ensures the potential capability of being miniaturized. This may allow for in-situ, highly-sensitive, heavy metal sensors in a compact format.
机译:我们提出了一种基于无标签光纤的传感器设备,可以检测水中的铜离子(Cu 2 + )。一种多模光纤,其聚合物包层沿1厘米长被去除,用于光学传感器头,其中液相注入的Cu 2 + 用作光学系统的液体包层模式。各种Cu 2 + 浓度可调节液体包层波导部件的数值孔径(NA)。液体包层和固体包层的被引导部件之间的NA失配的程度引起光功率透射率变化,从而形成感测原理。提出的液体包层光纤传感器的最小可分辨折射率为2.48×10 -6 。对于Cu 2 + 检测,我们使用壳聚糖共轭乙二胺四乙酸(EDTA)对传感器头表面(纤维芯)进行功能化,由于增强了螯合作用,该EDTA可有效捕获Cu 2 + 。我们获得的Cu 2 + 的检出限为1.62 nM(104 ppt),大大低于饮用水中的容许水平(〜30 µM),动态范围达到1 mM 。传感器头和传感系统的简单结构确保了其潜在的小型化能力。这可以允许紧凑形式的原位,高灵敏度的重金属传感器。

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