几何性质对金纳米粒子局域表面等离子体共振的影响

L. Nguyen, Quoc Trung Trinh, Quang Bao Tu, Van-Quynh Nguyen, T. Hoang
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摘要

本文报道了两种不同形状的金纳米粒子(AuNPs):球形粒子和三角形粒子诱导的等离子体效应(即光散射和吸收特性)。利用边界元法(MNPBEM工具箱)研究了散射截面和电场分布。本文考虑了两种结构:孤立的aunp和耦合的双金np体系,以评估单个或耦合aunp结构中的局部表面等离子体共振(LSPR)。研究了周围介质对纳米粒子散射特性的影响。然后,通过绘制电场分布图,识别出“热点”强度与两个NPs之间距离的关系。所得结果可作为利用LSPR进行传感或其他应用的AuNP结构的合成指南。
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Effect of Geometrical Properties on Localized Surface Plasmon Resonance of Gold Nanoparticles
This work reportson plasmonic effects (i.e light scattering and absorption properties) induced by two different gold nanoparticles (AuNPs)-shaped: spherical particle and triangular particle. The scattering cross-section and electric field profiles have been investigated by using theboundary element method (MNPBEM toolbox). Two configurations: the isolated AuNPand the coupledtwo-gold NPsystem have been considered to evaluate the localized surface plasmon resonance (LSPR) in eithersingle or coupled AuNPstructures. The effect of the surrounding medium on the scattering behavior of the NPs has also been examined. Then the dependence of “hotspot” intensity on the distance between two NPs has been recognized by mapping the electric field profile. The obtained results can be used as the guidelines for synthesizing AuNP structures to employ LSPR for sensing or other applications.
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