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Optical properties of silver nanocrystals self-organized in a two-dimensional superlattice: Substrate effect - art. no. 045415

机译:在二维超晶格中自组织的银纳米晶体的光学性质:衬底效应-艺术。没有。 045415

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摘要

Experimental and calculated reflectivity spectra of silver nanocrystals self-assembled in compact hexagonal networks on various substrates [highly oriented pyrolytic graphite (HOPG), gold, silicon, and Al0.7Ga0.3As] are compared. The calculated spectra are deduced from a model based on a mean-field theory and taking into account the electromagnetic resonances for p (parallel) and s (perpendicular) polarizations. From experimental and calculated spectra, it is concluded that the major change in the responses is due to the refractive index of the substrate. Hence, the optical properties of coated silver nanocrystals organized in a hexagonal network do not depend on the substrate used. That is to say no specific interactions between nanocrystals and substrate take place. Collective optical properties due to the formation of a film made of 5-nm silver nanocrystals are observed. This is pointed out by the appearance of an additional resonance at a higher energy than that of the plasmon resonance of isolated nanocrystals. [References: 33]
机译:比较了在紧凑的六边形网络中自组装的银纳米晶体在各种基板[高取向热解石墨(HOPG),金,硅和Al0.7Ga0.3As]上的实验和计算的反射光谱。计算得出的光谱是从基于平均场理论的模型中推导出来的,其中考虑了p(平行)和s(垂直)极化的电磁共振。从实验和计算的光谱可以得出结论,响应的主要变化是由于基板的折射率引起的。因此,以六边形网络组织的涂覆的银纳米晶体的光学性质不取决于所使用的基底。也就是说,纳米晶体和衬底之间没有发生特定的相互作用。观察到由于形成了由5nm银纳米晶体制成的膜而引起的集体光学性能。通过以比分离的纳米晶体的等离子体共振更高的能量出现附加共振来指出这一点。 [参考:33]

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