Structure Design and Sensitivity Optimization of Optical Fiber Biosensor Based Au Nano Column - TiO2 Heterostructure

M. H. Younus, O. F. Ameen, H. A. Salih
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Abstract

An investigation on a single mode optical fiber sensor-based surface plasmon resonance was carried out in this work. A titanium dioxide (TiO2) coated gold Nano-column (Au) are deposited on the proposed sensor and theoretically analyzed using COMSOL Muliphysics software 5.3. Presence of TiO2 over the Au Nano-column can improve the sensitivity of the sensor and tune the resonance peak of transmission spectrum from visible region to near-infrared region. The size effect of TiO2 nanoparticles on the sensor performance is studied. The optimum parameters of such as Au size and separation width between the Au Nano-column have been selected to enhance the performance of the sensor. In comparison, the sensor with TiO2 over Au Nano-column is significantly improve the sensitivity and develop the sensor performance. The greater sensitivity of 5243.76 nm/RIU (refractive index unit) is obtained of sensor with TiO2 over Au Nano-column when the external refractive index of analyte is varying from 1.33 to 1.39, while sensitivity of the sensor coated with Au Nano-column is obtained to be 4643.17 nm/RIU for the same analyte range. Above results can be used to predict the best parameters values of the sensor that corresponding to the greatest sensitivities of detection and finally opening new study in the field of gas sensors. HIGHLIGHTS Optical fiber biosensors are a devices that use to measure the analyte by using the optical field Optical fiber biosensors have a high detection speed and low-cost, compared to congenital sensors The optical fiber sensors based SPR are widely used for biosensor applications The novelty in this research is the fabricate of optical fiber sensor coated with TiO2 over Au Nano-column based SPR foe gas detection GRAPHICAL ABSTRACT
基于金纳米柱 - TiO2 异质结构的光纤生物传感器的结构设计与灵敏度优化
本研究对基于表面等离子体共振的单模光纤传感器进行了研究。在拟议的传感器上沉积了二氧化钛(TiO2)涂层金纳米柱(Au),并使用 COMSOL Muliphysics 软件 5.3 进行了理论分析。金纳米柱上的二氧化钛可以提高传感器的灵敏度,并将透射光谱的共振峰从可见光区调整到近红外区。研究了 TiO2 纳米粒子的尺寸对传感器性能的影响。为提高传感器的性能,选择了金的尺寸和金纳米柱之间的分离宽度等最佳参数。相比之下,在金纳米柱上添加二氧化钛的传感器明显提高了灵敏度并改善了传感器的性能。当被分析物的外部折射率在 1.33 至 1.39 之间变化时,在金纳米柱上镀有二氧化钛的传感器的灵敏度为 5243.76 nm/RIU(折射率单位),而在相同的被分析物范围内,镀金纳米柱的传感器的灵敏度为 4643.17 nm/RIU。上述结果可用于预测与最大检测灵敏度相对应的传感器最佳参数值,从而为气体传感器领域开辟新的研究方向。光学纤维生物传感器是一种利用光场测量被分析物的装置。与先天性传感器相比,光学纤维生物传感器具有检测速度快、成本低的特点。
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