Nanoparticle-Based FM-MCF LSPR Biosensor With Open Air-Hole

Chuanhao Yang, Shiyan Xiao, Qi Wang, Hongxia Zhang, Hui Yu, Dagong Jia
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Abstract

A nanoparticle-based few-mode multi-core fiber (FM-MCF) localized surface plasmon resonance (LSPR) biosensor is proposed and analyzed using the finite element method (FEM). It’s critical to narrow the loss spectrum and improve the coupling efficiency, which makes it have high resolution and high sensitivity. With the aid of open air holes, the gold nanoparticles are easily assembled on the surface of this FM-MCF LSPR biosensor. Through multiple investigations, the performance of the sensor can be improved by properly setting gold nanoparticle configurations, such as radius, positions, shapes, and nanoparticle arrays. The simulation results show that when three circular gold nanoparticles with a radius of 150 nm are placed symmetrically in the open air hole and the angle between adjacent nanoparticles is 5°, the maximum sensitivity of 7,351.6 nm/RIU (LP02y mode na = 1.38) can be obtained in the sensing range of 1.33–1.38, which covers the refractive index (RI) of biological fluids, such as bovine serum albumin (BSA) solution and human Immunoglobulin G.
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基于纳米颗粒的开放气孔FM-MCF LSPR生物传感器
提出了一种基于纳米粒子的少模多芯光纤(FM-MCF)局域表面等离子体共振(LSPR)生物传感器,并用有限元方法对其进行了分析。缩小损耗谱、提高耦合效率是实现高分辨率、高灵敏度的关键。在开放气孔的帮助下,金纳米颗粒很容易组装在这种FM-MCF LSPR生物传感器的表面。通过多次研究,可以通过适当设置金纳米粒子的配置,如半径、位置、形状和纳米粒子阵列,来提高传感器的性能。仿真结果表明,当3个半径为150 nm的圆形金纳米颗粒对称放置在开放的空气孔中,相邻纳米颗粒之间的夹角为5°时,在1.33 ~ 1.38的传感范围内,可获得最大灵敏度为7351.6 nm/RIU (LP02y模式na = 1.38),该传感范围涵盖了牛血清白蛋白(BSA)溶液和人免疫球蛋白G等生物液体的折射率(RI)。
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