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Fiber optic sensor based on ZnO nanowires decorated by Au nanoparticles for improved plasmonic biosensor

机译:基于金纳米粒子修饰的ZnO纳米线的光纤传感器用于改进的等离子体生物传感器

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摘要

Fiber-optic-based localized surface plasmon resonance (FO-LSPR) sensors with three-dimensional (3D) nanostructures have been developed. These sensors were fabricated using zinc oxide (ZnO) nanowires and gold nanoparticles (AuNPs) for highly sensitive plasmonic biosensing. The main achievements in the development of the biosensors include: (1) an extended sensing area, (2) light trapping effect by nanowires, and (3) a simple optical system based on an optical fiber. The 3D nanostructure was fabricated by growing the ZnO nanowires on the cross-section of optical fibers using hydrothermal synthesis and via immobilization of AuNPs on the nanowires. The proposed sensor outputted a linear response according to refractive index changes. The 3D FO-LSPR sensor exhibited an enhanced localized surface plasmon resonance response of 171% for bulk refractive index changes when compared to the two-dimensional (2D) FO-LSPR sensors where the AuNPs are fixed on optical fiber as a monolayer. In addition, the prostate-specific antigen known as a useful biomarker to diagnose prostate cancer was measured with various concentrations in 2D and 3D FO-LSPR sensors, and the limits of detection (LODs) were 2.06 and 0.51 pg/ml, respectively. When compared to the 2D nanostructure, the LOD of the sensor with 3D nanostructure was increased by 404%.
机译:已经开发出具有三维(3D)纳米结构的基于光纤的局部表面等离子体共振(FO-LSPR)传感器。这些传感器是使用氧化锌(ZnO)纳米线和金纳米颗粒(AuNPs)制造的,用于高度敏感的等离子体生物传感。生物传感器开发的主要成就包括:(1)扩大了传感区域;(2)纳米线的光捕获效应;(3)基于光纤的简单光学系统。通过使用水热合成法在光纤横截面上生长ZnO纳米线并通过将AuNPs固定在纳米线上来制造3D纳米结构。所提出的传感器根据折射率变化输出线性响应。与二维(2D)FO-LSPR传感器(其中AuNPs以单层固定在光纤上)相比,3D FO-LSPR传感器在整体折射率变化方面表现出了171%的增强的局部表面等离子体共振响应。此外,在2D和3D FO-LSPR传感器中以各种浓度测量了称为前列腺癌的有用生物标志物的前列腺特异性抗原,其检出限(LOD)分别为2.06和0.51μpg/ ml。与2D纳米结构相比,具有3D纳米结构的传感器的LOD增加了404%。

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