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Probing dynamically tunable localized surface plasmon resonances of film-coupled nanoparticles by evanescent wave excitation

机译:通过e逝波激发探测膜耦合纳米颗粒的动态可调局部表面等离子体共振

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摘要

The localized surface plasmon resonance (LSPR) spectrum associated with a gold nanoparticle (NP) coupled to a gold film exhibits extreme sensitivity to the nanogap region where the fields are tightly localized. The LSPR of an ensemble of film-coupled NPs can be observed using an illumination scheme similar to that used to excite the surface plasmon resonance (SPR) of a thin metallic film; however, in the present system, the light is used to probe the highly sensitive distance-dependent LSPR of the gaps between NPs and film rather than the delocalized SPR of the film. We show that the SPR and LSPR spectral contributions can be readily distinguished, and we compare the sensitivities of both modes to displacements in the average gap between a collection of NPs and the gold film. The distance by which the NPs are suspended in solution above the gold film is fixed via a thin molecular spacer layer and can be further modulated by subjecting the NPs to a quasistatic electric field. The observed LSPR spectral shifts triggered by the applied voltage can be correlated with angstrom scale displacements of the NPs, suggesting the potential for chip-scale or flow-cell plasmonic nanoruler devices with extreme sensitivity.
机译:与耦合至金膜的金纳米粒子(NP)相关的局部表面等离子体共振(LSPR)光谱对电场紧密定位的纳米间隙区域表现出极高的敏感性。可以使用类似于激发金属薄膜表面等离子体激元共振(SPR)的照明方案来观察薄膜耦合NP集合体的LSPR。然而,在本系统中,光用于探测NP与膜之间的间隙的高度敏感的距离相关的LSPR,而不是膜的离域SPR。我们表明可以很容易地区分出SPR和LSPR光谱的贡献,并且我们比较了两种模式对NP集合与金膜之间的平均间隙位移的敏感性。 NPs悬浮在金膜上方的溶液中的距离是通过薄分子间隔层固定的,可以通过使NPs进入准静态电场来进一步调节。所观察到的由施加电压触发的LSPR光谱偏移可以与NP的埃尺度位移相关,这表明具有极高灵敏度的芯片尺度或流动池等离子体纳米尺器件的潜力。

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