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Effect of Surface Coverage of Gold Nanoparticles on the Refractive Index Sensitivity in Fiber-Optic Nanoplasmonic Sensing

机译:金纳米颗粒的表面覆盖对光纤纳米等离子体传感中折射率灵敏度的影响

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摘要

A simple theoretical model was developed to analyze the extinction spectrum of gold nanoparticles (AuNPs) on the fiber core and glass surfaces in order to aid the determination of the surface coverage and surface distribution of the AuNPs on the fiber core surface for sensitivity optimization of the fiber optic particle plasmon resonance (FOPPR) sensor. The extinction spectrum of AuNPs comprises of the interband absorption of AuNPs, non-interacting plasmon resonance (PR) band due to isolated AuNPs, and coupled PR band of interacting AuNPs. When the surface coverage is smaller than 12.2%, the plasmon coupling effect can almost be ignored. This method is also applied to understand the refractive index sensitivity of the FOPPR sensor with respect to the non-interacting PR band and the coupled PR band. In terms of wavelength sensitivity at a surface coverage of 18.6%, the refractive index sensitivity of the coupled PR band (205.5 nm/RIU) is greater than that of the non-interacting PR band (349.1 nm/RIU). In terms of extinction sensitivity, refractive index sensitivity of the coupled PR band (−3.86/RIU) is similar to that of the non-interacting PR band (−3.93/RIU). Both maximum wavelength and extinction sensitivities were found at a surface coverage of 15.2%.
机译:建立了一个简单的理论模型来分析金纳米颗粒(AuNPs)在纤维芯和玻璃表面上的消光光谱,以帮助确定AuNPs在纤维芯表面上的表面覆盖率和表面分布,从而优化金纳米颗粒的灵敏度。光纤粒子等离子体共振(FOPPR)传感器。 AuNPs的消光光谱包括AuNPs的带间吸收,由于分离的AuNPs引起的非相互作用等离子体共振(PR)带以及相互作用的AuNPs的耦合PR带。当表面覆盖率小于12.2%时,等离子体激元耦合效应几乎可以忽略。此方法还适用于了解FOPPR传感器相对于非交互PR波段和耦合PR波段的折射率灵敏度。就表面覆盖率为18.6%的波长灵敏度而言,耦合PR带的折射率灵敏度(205.5nm / RIU)大于非相互作用PR带的折射率灵敏度(349.1nm / RIU)。就消光灵敏度而言,耦合PR波段的折射率灵敏度(−3.86 / RIU)与非相互作用PR波段的折射率灵敏度(−3.93 / RIU)相似。在15.2%的表面覆盖率下发现最大波长和消光灵敏度。

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