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Distance-dependent fluorescence of tris(bipyridine)ruthenium(II) on supported plasmonic gold nanoparticle ensembles

机译:军事的荧光三(关于)钌(II)的支持电浆黄金纳米颗粒集合体

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摘要

Metal surfaces and nanostructures interact with fluorescent materials, enhancing or quenching the fluorescence intensity, modifying the fluorescent lifetime, and changing the emission frequency and linewidth. These interactions occur via several mechanisms, including radiationless energy transfer, electric field enhancement, and photonic mode density modification. The interactions display a strong dependence on the distance between the fluorophore and the metal structures. Here we study the distance-dependent effects of two types of plasmonic gold nano-island films on the emission intensity, wavelength, linewidth and lifetime of a fluorophore layer, separated from the film by a dielectric spacer 2-348 nm thick. The distance dependence is found to be unrelated to the plasmonic field decay lengths. In some cases fluorescence intensity enhancement is seen even at 200 nm metal-fluorophore separation, indicating far-field effects. We report, for the first time, a distance-dependent oscillation in the emission peak wavelength and linewidth, attributed to interference-based oscillations in the intensity of the electric field. We find that the studied nanoparticle (NP) films do not display the previously reported distance profile of single NPs, but rather behave in a collective fashion similar to continuous metal surfaces.
机译:金属表面和纳米结构相互作用荧光材料,加强或淬火荧光强度,修改荧光一生,改变发射频率和线宽。机制,包括非辐射的能量转让、电场增强,光子密度模式修改。交互显示一个强烈的依赖荧光团和金属之间的距离结构。两种类型的电浆黄金的影响nano-island电影排放强度,波长、谱线宽度和终生的荧光团层,分开的电影电介质间隔2 - 348 nm厚。依赖是无关电浆场衰减长度。可见荧光强度增强在200 nm metal-fluorophore分离,表明远场效应。第一次,一个军事振荡发射峰波长和谱线宽度,归因于interference-based振荡电场的强度。研究了纳米颗粒(NP)的电影之前报道的距离剖面显示单NPs,而是集体的行为时尚与连续的金属表面。

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