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首页> 外文期刊>Optics & Laser Technology >A novel periodically tapered structure-based gold nanoparticles and graphene oxide - Immobilized optical fiber sensor to detect ascorbic acid
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A novel periodically tapered structure-based gold nanoparticles and graphene oxide - Immobilized optical fiber sensor to detect ascorbic acid

机译:一种新型周期性锥形结构基金纳米颗粒和石墨烯氧化物 - 固定的光纤传感器,用于检测抗坏血酸

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摘要

This work presents a study, analysis, design, and characterization of a localized surface plasmon resonance (LSPR) based ascorbic acid (AA) sensor with improved sensitivity compared to those already reported. Various multi-tapered (four, five, and eight tapered) optical fiber sensors (OFSs) have been developed and characterized in this study. Along with these, different nanomaterials (NMs), such as gold nanoparticles (AuNPs) and graphene oxide (GO), are immobilized over the bare probe. Further, NMs immobilized probes are functionalized with ascorbate oxidase. The AuNPs are well studied in the past with the variation in size, shape and surface functionalization and have been found to be well-suited NMs for biosensing applications. On the other hand, GO-based material is equally promising in the nanostructure-based optical sensing due to their broad surface area, high electrical conductivity, good chemical stability, and excellent mechanical behavior. The performance parameters of the proposed sensor, such as sensitivity (8.3 nm/mM), correlation correlator (0.9724), and limit of detection (51.94 mu M) are greatly improved over the previous designs. A wide range of characterization and validation of NMs immobilized structures are reported here. It indicates a great potential in the practical implementation of LSPR based OFSs for routine diagnostics.
机译:该工作介绍了基于局部表面等离子体共振(LSPR)的抗坏血酸(AA)传感器的研究,分析,设计和表征,与已经报道的那些具有改善的灵敏度。在本研究中开发并表征了各种多锥形(四个,五个和八个锥形)光纤传感器(OFSS)。与这些不同的纳米材料(NMS)一起,例如金纳米颗粒(AUNP)和氧化铟烯(GO)固定在裸探针上。此外,NMS固定化探针用抗坏血酸氧化酶官能化。过去的尺寸,形状和表面官能化的变化很好地研究了AUNPS,并且已被发现是生物传感应用的很好的NMS。另一方面,由于其宽表面积,高导电性,良好的化学稳定性和优异的机械行为,基于基于纳米结构的光学感测在基于纳米结构的光学感测。所提出的传感器的性能参数,例如灵敏度(8.3nm / mm),相关性相关器(0.9724)和检测极限(51.94 mu m)在以前的设计中大大提高。这里报道了各种特征和验证NMS固定结构。它表明了在基于LSP的实际实现中的常规诊断的巨大潜力。

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