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Plasmon spectroscopy of small indium-silver clusters: monitoring the indium shell oxidation

机译:小型铟银团簇的等离子光谱:监测铟壳的氧化

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Owing to the very different eiectrovalences of indium and silver, nanoparticles made of these elements are among the simplest examples of hybrid plasmonic systems retaining a full metallic character. The optical properties of small indium-silver clusters are investigated here for the first time in relation to their structural characterization. They are produced in the gas phase by a laser vaporization source and co-deposited in a silica matrix. The optical absorption of fresh samples is dominated by a strong surface plasmon resonance (SPR) in the near UV, in an intermediate position between those of pure elements. A combination of SPR analysis and electron microscopy imaging provides evidence for the favourable surface segregation of indium. After a prolonged exposure to ambient air and because of the silica matrix porosity, changes in the SPR reflect the spontaneous formation of a dielectric indium oxide shell around a metallic silver core. The metallic character of indium can nevertheless be recovered by annealing under a reducing atmosphere. The reversibility of these processes is directly mirrored in optical measurements through SPR shifts and broadenings as supported by multi-shell Mie theory calculations. By controlling their oxidation level, In-Ag clusters can be considered as new candidates to extend SPR spectroscopy in the UV range and model plasmonic systems consisting of a silver particle of potentially very small size, fully protected by a dielectric oxide shell.
机译:由于铟和银的不同电导率,由这些元素制成的纳米粒子是保留了完整金属特性的混合等离子体系统的最简单实例。本文首次研究了小型铟银团簇的光学特性及其结构特征。它们是由激光汽化源在气相中产生的,并共沉积在二氧化硅基质中。新鲜样品的光吸收主要是在近紫外线中,在纯元素之间的中间位置,有一个强表面等离子体共振(SPR)。 SPR分析和电子显微镜成像的结合为铟的有利表面偏析提供了证据。在长时间暴露于环境空气中之后,由于二氧化硅基质的多孔性,SPR的变化反映了围绕金属银核的介电氧化铟壳的自发形成。但是,可以通过在还原气氛下退火来恢复铟的金属特性。这些过程的可逆性直接通过多壳米氏理论计算所支持的SPR偏移和加宽而直接反映在光学测量中。通过控制其氧化水平,可以将In-Ag团簇视为扩展SPR光谱在紫外范围内的模型的新候选者,并可以模拟由可能尺寸非常小的银粒子组成的等离激元系统,该粒子由介电氧化物壳完全保护。

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