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Optical properties of noble-metal nanoparticles coated with a dye J-aggregate monolayer

机译:染料J骨料单层涂层的贵金属纳米粒子的光学性质

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We report experimental and theoretical studies of the optical properties of composite nanoparticles consisting of a noble-metal (Ag or Au) core and a cyanine dye J-aggregate shell. Using transmission electron microscopy, the particles have been shown to be spherical in shape and 4 ? 10 nm in size. The crystal structure of their core has been determined by 1-keV electron diffraction. The absorption spectra of such nanoparticles in aqueous suspension show two peaks, one due to the plasmon resonance in the metallic core, and the other to electronic excitations in the J-aggregate shell. These results are interpreted in a model based on the expression for the absorption cross section of small particles, using polar- isability calculations for two concentric spheres with allow- ance for the size effect on the dielectric function of the metallic core. The dielectric function of the J-aggregates is derived from experimental data using Kramers ? Kronig relations. The shape and position of the peaks in the absorption spectra of the hybrid nanoparticles are strongly dependent on their geometry and the optical properties of the core and shell materials. This offers the possibility of controlling the optical properties of composite materials based on such nanoparticles.
机译:我们报告了由贵金属(Ag或Au)核和花青染料J聚集壳组成的复合纳米颗粒的光学性质的实验和理论研究。使用透射电子显微镜观察,颗粒显示为球形,直径为4?。尺寸为10纳米。它们的核的晶体结构已经通过1-keV电子衍射确定。此类纳米颗粒在水悬浮液中的吸收光谱显示出两个峰,一个峰是由于金属核中的等离子体共振,另一个峰是由于J聚集壳中的电子激发。在基于小颗粒吸收截面表达式的模型中,使用两个同心球的极化率计算,并考虑到尺寸对金属芯介电功能的影响,将这些结果解释为模型。 J聚集体的介电函数是使用Kramers?的实验数据得出的。克罗尼希(Kronig)关系。杂化纳米颗粒的吸收光谱中峰的形状和位置在很大程度上取决于其几何形状以及核和壳材料的光学性质。这提供了控制基于此类纳米颗粒的复合材料的光学性质的可能性。

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