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Photoluminescence of Fullerene C-60 Thin Film in Plasmon-Coupled Monolayer of Au Nanoparticles - C (60) Film - Al Film Nanostructure

机译:Au纳米粒子 - C(60)膜 - Al膜纳米结构等离子体偶联单层中富勒烯C-60薄膜的光致发光

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摘要

The plasmon-enhanced photoluminescence of fullerene C-60 thin film has been studied to reveal the dependence of the magnitude of plasmonic field in coupled nanosystem monolayer of gold nanoparticles - fullerene C (60) film - aluminum film on the thickness of the fullerene spacer in the range of 10-95 nm. The non-monotonic dependence of the photoluminescence enhancement factor with minimum at the fullerene film thickness of 50 nm has been observed. Such dependence has been explained as the result of excitation of the propagating surface plasmon polaritons in aluminum film by the near field of localized surface plasmons of gold nanoparticles. The excitation of polaritons leads to additional radiative damping of plasmonic oscillations in gold nanoparticles that causes the decrease of the enhancement factor of the intensity of fullerene photoluminescence. Fifty nanometers is revealed to be the spacer thickness at which the most effective excitation of surface plasmon polaritons occurs.
机译:已经研究了富勒烯C-60薄膜的等离子体增强的光致发光,以揭示额外纳米粒子 - 富勒烯C(60)膜 - 铝膜偶联纳米族单层厚度的纳米粒子 - 铝膜厚度依赖于富勒烯间隔物的厚度的依赖性 范围为10-95 nm。 已经观察到光致发光增强因子的非单调依赖性在50nm的富勒烯膜厚度下。 通过铝膜中的铝膜中的泛型型表面等离子体的近场激发铝膜中的繁殖表面等离子体极化膜激发的结果,已经解释了这种依赖性。 Polaritons的激发导致金纳米颗粒中等离子体振荡的额外辐射阻尼,导致富勒烯光致发光强度的增强因子降低。 揭示了五十纳米的间隔厚度,在该间隔厚度上发生最有效的表面等离子体极性官。

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