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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Spectroscopic studies of liquid solutions of R6G laser dye and Ag nanoparticle aggregates
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Spectroscopic studies of liquid solutions of R6G laser dye and Ag nanoparticle aggregates

机译:R6G激光染料和Ag纳米粒子聚集体的液体溶液的光谱研究

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摘要

We have found that R6G laser dye in a concentration of 0.1 g l(-1) mixed with a solution of aggregated silver nanoparticles exhibits a new emission band with a maximum at 612 nm. This band does not exist in pure dye of comparable concentration or in a mixture of dye with a solution of single silver nanoparticles. A qualitatively similar red-shifted emission band is observed in pure R6G dye at very high concentration (3.8 or 16.7 g l(-1)). In both cases, no changes occur to the shapes of the absorption spectra of the dye.We explain the observed spectral changes in terms of J-aggregates of R6G molecules whose formation is probable in the presence of Ag aggregates with a complicated surface structure and is much less likely in the case of adsorption of dye molecules on single Ag nanoparticles.Alternatively, many features observed in the experiment can be explained by an enhancement of the rates of spontaneous radiative transitions in the proximity of metallic particles, which is due to a modification of the local density of electromagnetic modes in the vicinity of metal surfaces at energies resonant with surface plasmon resonances.
机译:我们已经发现,浓度为0.1 g l(-1)的R6G激光染料与聚集的银纳米颗粒溶液混合显示了一个新的发射带,该发射带在612 nm处具有最大值。该条带不存在于具有相当浓度的纯染料中,也不存在于染料与单个银纳米颗粒溶液的混合物中。在纯R6G染料中以非常高的浓度(3.8或16.7 g l(-1))观察到定性相似的红移发射带。在这两种情况下,染料的吸收光谱的形状都没有变化。我们用R6G分子的J聚集体解释了观察到的光谱变化,R6G分子的J聚集体可能在存在复杂表面结构的Ag聚集体的情况下形成。染料分子吸附在单个Ag纳米颗粒上的可能性要小得多。或者,实验中观察到的许多特征可以通过提高金属颗粒附近的自发辐射跃迁速率来解释,这是由于修饰与表面等离振子共振共振的能量下,金属表面附近电磁模的局部密度的变化。

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