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Organic-inorganic planar hybrid materials for spasers

机译:用于飞镖的有机-无机平面杂化材料

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We strive to obtain highly fluorescent planar materials that may be used for the development of nanolasers based on localized plasmons. The promissing candidates for this purpose are materials consisting of mixtures of organic molecules, polymer, and silver nanoparticles. Silver nanoparticles were preliminary deposited on the quartz substrates. These samples were characterized by SEM and absorption spectroscopy. Then, they were covered by the polymer/rhodamine and polymer/coumarin layers using either spin-coating or evaporation techniques and characterized by confocal luminescent microscopy and spectroscopy. As a result of the localized surface plasmon excitation, we observed the enhancement of the rhodamine and coumarine absorption in the near fields of silver nanoparticles. The fluorescence of the thin films of polymer activated by dyes molecules with silver nanoparticles was almost 20-fold more intense than that on the bare dielectric surfaces without silver nanoparticles. In the presence Ag nanoparticles and at increased intensities of excitation we found also slight narrowing of the luminescence spectrum of polymer/coumarin layers.
机译:我们努力获得高度荧光的平面材料,这些材料可用于基于局部等离激元的纳米激光的开发。为此目的最好的候选材料是由有机分子,聚合物和银纳米颗粒的混合物组成的材料。将银纳米颗粒预先沉积在石英基底上。这些样品通过SEM和吸收光谱法表征。然后,使用旋涂或蒸发技术将它们覆盖在聚合物/若丹明和聚合物/香豆素层中,并通过共聚焦发光显微镜和光谱法对其进行表征。作为局部表面等离子体激元激发的结果,我们观察到了在银纳米颗粒的近场中罗丹明和香豆碱吸收的增强。具有银纳米颗粒的染料分子活化的聚合物薄膜的荧光强度比不含银纳米颗粒的裸介电表面的荧光强度高近20倍。在存在银纳米颗粒的情况下,在激发强度增加的情况下,我们还发现聚合物/香豆素层的发光光谱略有变窄。

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