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Attenuation, Scattering, and Depolarization of Light by Gold Nanorods with Silver Shells

机译:银壳金纳米棒对光的衰减,散射和去极化

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Gold nanoparticles with silver nanoshells are obtained by synthesizing gold nanorods in a growing solution containing cetyltrimethylammonium bromide, subsequent separation in a concentration gradient of glycerol, and reduction of silver nitrate by ascorbic acid under alkaline conditions in the presence of polyvi-nylpyrrolidone. The formation of silver nanoshells was monitored by the shift of plasmon resonances of extinction and differential light scattering, by the appearance of characteristics peaks of silver in the energy dispersive X-ray (EDX) spectra of samples, by the data of transmission electron microscopy, and by visual changes in the color of colloids. The spectrum of the intensity ratio of the co- and cross-polarized components of light scattered by gold-silver nanorods is measured for the first time, and it is observed that the maximum is shifted by 80-100 nm compared to previously published spectra of gold nanorods (Khlebtsov et al., J. Phys. Chem. C 112, 12760 (2008)). The extinction and light scattering spectra are calculated by the method of separation of variables using the model of a confocal two-layer spheroid and these calculations are found to agree with spectral measurements. A method for determining the thickness of a silver nanolayer by the spectral shift of an extinction longitudinal resonance is described. The obtained data of optical spectroscopy and transmission electron microscopy and estimations of the mass of the deposited metal show that the average thickness of the silver layer varies from 0.12 to 4 nm as the Ag/Au ratio changes from 2/80 to 90/80 (mu)g/(mu)g.
机译:通过在含有十六烷基三甲基溴化铵的生长溶液中合成金纳米棒,在甘油的浓度梯度中进行分离,以及在碱性条件下在聚乙烯吡咯烷酮的存在下,通过抗坏血酸还原硝酸银,可获得具有纳米银壳的金纳米颗粒。通过消光和散射光的等离激元共振的位移,样品在能量色散X射线(EDX)光谱中银的特征峰的出现,透射电子显微镜的数据来监测银纳米壳的形成,以及通过胶体颜色的视觉变化。首次测量了由金-银纳米棒散射的光的同极化和交叉极化分量的强度比的光谱,并且观察到,与先前公布的光谱相比,最大值移动了80-100 nm。金纳米棒(Khlebtsov et al。,J.Phys.Chem.C 112,12760(2008))。消光和光散射光谱是通过使用共焦两层椭球体模型的变量分离方法来计算的,这些计算结果与光谱测量结果一致。描述了通过消光纵向共振的光谱偏移来确定银纳米层的厚度的方法。所获得的光谱学和透射电子显微镜数据以及沉积金属的质量估计表明,随着Ag / Au比从2/80变为90/80,银层的平均厚度在0.12 nm至4 nm之间变化(微克/微克。

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