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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Experimental and theoretical studies on localized surface plasmon resonance based fiber optic sensor using graphene oxide coated silver nanoparticles
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Experimental and theoretical studies on localized surface plasmon resonance based fiber optic sensor using graphene oxide coated silver nanoparticles

机译:氧化石墨烯包覆的银纳米粒子用于基于表面等离振子共振的光纤传感器的实验和理论研究

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An optical fiber based refractive index sensor using graphene oxide (GO) encapsulated silver nanoparticles (AgNPs) is reported. The AgNPs are encapsulated with a very thin layer of GO as it controls the inter-particle distance thereby preventing aggregation. The encapsulation also enhances the colloidal stability and prevents the oxidation of the AgNPs by separating them from direct contact with the aqueous medium. High-resolution transmission electron microscopy results support the formation of 1 nm thick GO around AgNPs of an average size of 35 nm. A Raman spectrometer and a UV-VIS spectrometer have been used to characterize and study the synthesized nanoparticles along with GO. Further, Raman spectra support a 64.72% increase in D-peak intensity and a 52.91% increase in G-peak intensity of the GO-encapsulated AgNPs (GOE-AgNPs) with respect to GO. Further, the GOE-AgNPs are immobilized on the core of functionalized plastic-cladded silica fiber. FESEM confirms the immobilization of the GOE-AgNPs on the fiber core. We observed that the peak absorbance changes by 87.55% with a 0.05 change in the refractive index. The sensitivity of the proposed fiber sensor is found to be 0.9406 Delta A/RIU along with a resolution of 12.8 x 10(-4) RIU. MATLAB is used to calculate the absorbance of the AgNPs by considering the bound and free electron contribution along with the size-dependent dispersion of the nanoparticles. We found that the simulation results are in good agreement with the experimental results.
机译:报道了一种基于光纤的折射率传感器,该传感器使用氧化石墨烯(GO)封装的银纳米颗粒(AgNPs)。 AgNPs用很薄的GO层封装,因为它控制了粒子之间的距离,从而防止了聚集。包封还通过将AgNP与直接与水性介质的接触分开来增强了胶体稳定性,并防止了AgNP的氧化。高分辨率透射电子显微镜结果支持在平均大小为35 nm的AgNP周围形成1 nm厚的GO。拉曼光谱仪和紫外可见光谱仪已被用来表征和研究合成的纳米粒子以及GO。此外,相对于GO,拉曼光谱支持GO封装的AgNPs(GOE-AgNPs)的D峰强度增加64.72%,G峰强度增加52.91%。此外,GOE-AgNPs被固定在功能化的覆塑石英纤维的芯上。 FESEM证实了GOE-AgNPs固定在纤维芯上。我们观察到,吸光度的峰值变化为87.55%,折射率变化为0.05。提议的光纤传感器的灵敏度为0.9406 Delta A / RIU,分辨率为12.8 x 10(-4)RIU。通过考虑束缚和自由电子的贡献以及纳米颗粒的尺寸依赖性分散,使用MATLAB来计算AgNP的吸光度。我们发现仿真结果与实验结果吻合良好。

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