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通过逐步垂直组装制备的半嵌入式几何结构的等离子体纳米颗粒异质二聚体。

Plasmonic nanoparticle heterodimers in a semiembedded geometry fabricated by stepwise upright assembly.

作者信息

Wang Hui, Halas Naomi J

机构信息

Department of Chemistry, Rice University, 6100 Main Street, Houston, Texas 77005, USA.

出版信息

Nano Lett. 2006 Dec;6(12):2945-8. doi: 10.1021/nl062346z.

Abstract

We report the experimental realization of plasmonic heterodimers, pairs of directly adjacent, interacting metallic nanoparticles. A novel fabrication and positioning approach is utilized for the stepwise assembly of upright nanoparticle pairs, where the first nanoparticle is almost entirely embedded in an elastomeric dielectric medium prior to attachment of the second nanoparticle. The plasmon energies of the embedded nanoparticles are red-shifted, and the strongly anisotropic dielectric environment of the semiembedded nanoparticle pairs effectively transforms the structures into plasmonic heterodimers. The asymmetric hybridization of the plasmon modes of differing energies on the constituent nanoparticles of the heterodimer is clearly observed.

摘要

我们报道了等离子体异质二聚体(即直接相邻、相互作用的金属纳米颗粒对)的实验实现。一种新颖的制造和定位方法被用于逐步组装直立的纳米颗粒对,其中第一个纳米颗粒在连接第二个纳米颗粒之前几乎完全嵌入弹性体介电介质中。嵌入的纳米颗粒的等离子体能量发生红移,并且半嵌入的纳米颗粒对的强各向异性介电环境有效地将这些结构转变为等离子体异质二聚体。在异质二聚体的组成纳米颗粒上,不同能量的等离子体模式的不对称杂化清晰可见。

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