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首页> 外文期刊>Nanotechnology >Dual surface plasmon resonances in Zn nanoparticles in SiO2: an experimental study based on optical absorption and thermal stability
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Dual surface plasmon resonances in Zn nanoparticles in SiO2: an experimental study based on optical absorption and thermal stability

机译:SiO2中锌纳米粒子的双表面等离子体共振:基于光吸收和热稳定性的实验研究

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摘要

Metallic zinc nanoparticles ( NPs) of 5 - 15 nm in diameter, formed in silica glass ( SiO2) by Zn ion implantation of 60 keV, showed a strong ultraviolet absorption peak at around 4.8 eV, which has been assigned as the surface plasmon resonance ( SPR) of Zn NPs, and another small peak at 1.2 eV, which has never been reported before. To identify the origin of the 1.2 eV peak, the correlations of thermal stability between the two peaks and Zn NPs were evaluated under annealing both in a vacuum ( pure thermal stability) and in oxygen gas ( thermal oxidation stability). The well-correlated stability between the 1.2 eV peak, the 4.8 eV peak and Zn NPs indicates that the 1.2 eV peak is not ascribed to radiation- induced defects but to the Zn NPs. The 1.2 eV peak can be ascribed to an SPR of Zn NPs in SiO2, because the peak satisfies the criterion of the SPR of metallic NPs. Since the 4.8 eV peak is also expected to satisfy the criterion, Zn NPs in SiO2 have two SPRs at 1.2 and 4.8 eV.
机译:通过60 keV的Zn离子注入在石英玻璃(SiO2)中形成的直径为5-15 nm的金属锌纳米颗粒(NPs)在4.8 eV附近显示出很强的紫外线吸收峰,这被认为是表面等离子体共振( Zn NPs的SPR),另一个小峰位于1.2 eV,这是以前从未报道过的。为了确定1.2 eV峰的起源,在真空(纯热稳定性)和氧气(热氧化稳定性)中退火的情况下,评估了两个峰与Zn NP之间的热稳定性相关性。 1.2 eV峰,4.8 eV峰和Zn NP之间的良好相关稳定性表明1.2 eV峰不是归因于辐射诱导的缺陷,而归因于Zn NP。可以将1.2 eV峰归因于SiO2中Zn NP的SPR,因为该峰满足金属NP的SPR准则。由于4.8 eV峰也有望满足该标准,因此SiO2中的Zn NP在1.2和4.8 eV处具有两个SPR。

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