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SERS Properties of Gold Nanorods at Resonance with Molecular Transverse and Longitudinal Plasmon Excitations

机译:金纳米棒在分子横向和纵向等离子体激元共振下的SERS特性

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摘要

The amplification of Raman signals of the heteroaromatic cation 1-(N-methylpyrid-4-yl)-2-(N-methylpyrrol-2-yl)ethylene (>PEP+)) bound to Au nanorods (NRs) was investigated at different excitation wavelengths to study the effect of the laser resonance with the absorption band of the >PEP+ moiety and with the two plasmon oscillation modes of the NR. Two different >PEP+ derivatives, differing in the length of the alkyl chain bearing the anchoring group, were used as target molecules. Raman spectra obtained exciting at 514 or at 785 nm (i.e., exciting the transverse or the longitudinal plasmon band) present a higher intensity than that at 488 nm suggesting a higher Raman amplification when the laser excitation wavelength is resonant with one of the two plasmon modes. Moreover, considering results of Discrete Dipole Approximation (DDA) calculations of the local field generated at the NR surface when either the transverse or the longitudinal plasmon modes are excited, we deduced that the resonance condition of the 514-nm laser excitation with the absorption band of the dye strongly contributes to the amplification of the Raman signal.
机译:与纳米金棒(NRs)结合的杂芳族阳离子1-(N-甲基吡啶-4-基)-2-(N-甲基吡咯-2-基)乙烯(> PEP + ))拉曼信号的放大)在不同的激发波长下进行了研究,以研究激光共振对> PEP + 部分的吸收带和NR的两个等离子体激元振荡模式的影响。使用两个不同的> PEP + 衍生物作为目标分子,它们的带有锚定基团的烷基链的长度不同。在514或785 nm处激发(即激发横向或纵向等离激元带)获得的拉曼光谱呈现出比488 nm处更高的强度,这表明当激光激发波长与两种等离激元模式之一共振时,拉曼放大倍数更高。此外,考虑到当激发横向或纵向等离子体激元模式时,在NR表面产生的局部场的离散偶极近似(DDA)计算结果,我们推论出514 nm激光激发在吸收带下的共振条件染料的强力有助于拉曼信号的放大。

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