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ABSORPTION AND PLASMON RESONANCE OF BI-METALLIC CORE-SHELL NANOPARTICLES ON A DIELECTRIC SUBSTRATE

机译:双金属芯壳纳米粒子对介电基材的吸收和等离子体共振

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Numerical investigation of absorption efficiency profiles and localized surface plasmon resonance (LSPR) wavelengths are performed for metallic core-shell nanoparticles (NPs) placed over a BK7 glass substrate. Gold (Au) and silver (Ag) metallic components are used in two different core-shell structures. This numerical study is performed with vectorized version of the discrete dipole approximation with surface interactions (DDA-SI-v). Absorption enhancement and the hybrid modes of plasmon resonances of the core-shell structures are compared by using a metric that defines a size configuration. It is observed that small volume fraction of the core sizes results in shell domination over the plasmon response. Moreover, an additional study is conducted to discern the sensitivity of the refractive index of nanoparticles in different surrounding environments. With a selected core-shell size configuration of Ag-Au pairs, a significant absorption enhancement with a redshift of LSPR wavelength is observed for both Ag core-Au shell and Au core-Ag shell NPs. These findings show the possible targeted uses of metallic core-shell nanoparticles in local heating, bio-sensing, and material detection applications.
机译:对放置在BK7玻璃基板上的金属芯 - 壳纳米粒子(NPS)进行了吸收效率分布和局部表面等离子体共振(LSPR)波长的数值研究。金(Au)和银(Ag)金属组分用于两种不同的核心壳结构。使用具有表面相互作用的离散偶极逼近的离散偶极逼近的矢量化版本进行了该数值研究(DDA-Si-V)。通过使用定义尺寸配置的度量来比较核心壳结构的等离子体谐振的吸收增强和混合模式。观察到核心尺寸的小体积分数导致壳体占据等离子体响应。此外,进行另外的研究以辨别不同周边环境中纳米颗粒的折射率的敏感性。对于AG-AU对的选定核心壳大小配置,对于AG Core-Au Shell和Au Core-Ag Shell NPS,观察到具有LSPR波长的红移的显着吸收增强。这些发现显示了金属核 - 壳纳米颗粒在局部加热,生物传感和材料检测应用中的可能靶向用途。

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