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Combined antenna and localized plasmon resonance in raman scattering from random arrays of silver-coated, vertically aligned multiwalled carbon nanotubes

机译:来自镀银,垂直排列的多壁碳纳米管的随机阵列的拉曼散射中的组合天线和局部等离子体共振

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摘要

The electric field enhancement associated with detailed structure within novel optical antenna nanostructures is modeled using the surface integral equation technique in the context of surface-enhanced Raman scattering (SERS). The antennae comprise random arrays of vertically aligned, multiwalled carbon nanotubes dressed with highly granular Ag. Different types of "hot-spot" underpinning the SERS are identified, but contrasting characteristics are revealed. Those at the outer edges of the Ag grains are antenna driven with field enhancement amplified in antenna antinodes while intergrain hotspots are largely independent of antenna activity. Hot-spots between the tops of antennae leaning towards each other also appear to benefit from antenna amplification.
机译:在表面增强拉曼散射(SERS)的背景下,使用表面积分方程技术对与新型光学天线纳米结构内详细结构相关的电场增强进行了建模。该天线包括垂直排列的,多壁的碳纳米管的随机阵列,这些纳米管包覆有高度颗粒的Ag。确定了支撑SERS的不同类型的“热点”,但揭示了不同的特征。 Ag晶粒外边缘的那些天线是通过天线波腹中放大的场增强天线驱动的,而晶间热点在很大程度上与天线活动无关。彼此倾斜的天线顶部之间的热点也似乎受益于天线放大。

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