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Self-Referenced Optical Fiber Sensor for Hydrogen Peroxide Detection Based on LSPR of Metallic Nanoparticles in Layer-by-Layer Films

机译:基于LSPR的层状膜中金属纳米粒子的过氧化氢检测自参考光纤传感器

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摘要

Intensity-based optical fiber sensors are one of the most studied sensor approaches thanks to their simplicity and low cost. Nevertheless, their main issue is their lack of robustness since any light source fluctuation, or unexpected optical setup variation is directly transferred to the output signal, which, significantly reduces their reliability. In this work, a simple and robust hydrogen peroxide (H2O2) optical fiber sensor is proposed based on the Localized Surface Plasmon Resonance (LSPR) sensitivity of silver and gold metallic nanoparticles. The precise and robust detection of H2O2 concentrations in the ppm range is very interesting for the scientific community, as it is a pathological precursor in a wide variety of damage mechanisms where its presence can be used to diagnose important diseases such as Parkinson’s disease, diabetes, asthma, or even Alzheimer’s disease). In this work, the sensing principle is based the oxidation of the silver nanoparticles due the action of the hydrogen peroxide, and consequently the reduction of the efficiency of the plasmonic coupling. At the same time, gold nanoparticles show a high chemical stability, and therefore provide a stable LSPR absorption band. This provides a stable real-time reference that can be extracted from the spectral response of the optical fiber sensor, giving a reliable reading of the hydrogen peroxide concentration.
机译:基于强度的光纤传感器由于其简单性和低成本而成为研究最多的传感器之一。然而,它们的主要问题是它们缺乏鲁棒性,因为任何光源波动或意外的光学设置变化都会直接传递到输出信号,这会大大降低其可靠性。在这项工作中,基于银和金金属纳米粒子的局部表面等离子体共振(LSPR)灵敏度,提出了一种简单而坚固的过氧化氢(H2O2)光纤传感器。在科学界中,精确,可靠地检测H2O2浓度在ppm范围内非常有趣,因为它是多种损害机制中的病理学前兆,其存在可用于诊断重要疾病,例如帕金森氏病,糖尿病,哮喘,甚至是阿尔茨海默氏病)。在这项工作中,感测原理基于过氧化氢的作用使银纳米颗粒氧化,因此降低了等离子体耦合效率。同时,金纳米颗粒显示出高的化学稳定性,因此提供了稳定的LSPR吸收带。这提供了一个稳定的实时参考,可以从光纤传感器的光谱响应中提取该参考,从而提供可靠的过氧化氢浓度读数。

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