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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Plasmon Coupling in Two-Dimensional Arrays of Silver Nanoparticles: II. Effect of the Particle Size and Interparticle Distance
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Plasmon Coupling in Two-Dimensional Arrays of Silver Nanoparticles: II. Effect of the Particle Size and Interparticle Distance

机译:银纳米粒子二维阵列中的等离子耦合:II。粒径和颗粒间距离的影响

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摘要

The effect of the particle size and interparticle distance on the coherent plasmon coupling was studied in 2D arrays of silver nanoparticles. The plasmon coupling leads to the formation of a cooperative plasmon mode characterized by an intense and narrow peak in the blue spectral range. The arrays were fabricated via the self-assembly of the nanoparticles on poly(4-vinylpyridine)-modined glass substrates. Changing the ionic strength of the aqueous nanoparticle suspension prior to the self-assembly provided a possibility for controlling the interparticle distance in the arrays. The study revealed an optimum particle size around 86 nm and the corresponding optimum interparticle distance of about 107 nm for the strongest plasmon coupling, as determined from the most intense and sharpest resonance that was observed in water. Changing the dielectric medium will conceivably result in different values for the optimal particle size and interparticle distance.
机译:在银纳米颗粒的二维阵列中研究了粒径和颗粒间距离对相干等离子体激元耦合的影响。等离子体激元耦合导致协作等离子体激元模式的形成,其特征在于在蓝色光谱范围内的强且窄的峰。通过在聚(4-乙烯基吡啶)改性的玻璃基板上自组装纳米颗粒来制造阵列。在自组装之前改变水性纳米颗粒悬浮液的离子强度提供了控制阵列中颗粒间距离的可能性。该研究揭示了最强的等离激元耦合的最佳粒径约为86 nm,相应的最佳粒子间距离约为107 nm,这是根据在水中观察到的最强烈和最尖锐的共振确定的。可以想到的是,改变电介质将导致最佳粒径和颗粒间距离的值不同。

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