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Selective probe of the morphology and local vibrations at carbon nanoasperities

机译:碳纳米粗粒的形态和局部振动的选择性探针

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摘要

We introduce a way to selectively probe local vibration modes at nanostructured asperities such as tips of carbon nanohorns. Our observations benefit from signal amplification in surface-enhanced Raman scattering (SERS) at sites near a silver surface. We observe nanohorn tip vibration modes in the range 200-500 cm ~(-1), which are obscured in regular Raman spectra. Ab initio density functional calculations assign modes in this frequency range to local vibrations at the nanohorn cap resembling the radial breathing mode of fullerenes. Careful interpretation of our SERS spectra indicates presence of caps with 5 or 6 pentagons, which are chemically the most active sites. Changes in the peak intensities and frequencies with time indicate that exposure to laser irradiation may cause structural rearrangements at the cap.
机译:我们介绍了一种方法,可以选择性地探测诸如碳纳米角尖端之类的纳米结构粗糙处的局部振动模式。我们的观察得益于银表面附近部位表面增强拉曼散射(SERS)中的信号放大。我们观察到200-500 cm〜(-1)范围内的纳米角尖端振动模式在常规拉曼光谱中被掩盖。从头算密度函数计算将在该频率范围内的模式分配给纳米角帽处的局部振动,类似于富勒烯的径向呼吸模式。仔细解释我们的SERS光谱表明,存在5或6个五边形的帽,这是化学上最活跃的位点。峰值强度和频率随时间的变化表明,暴露于激光辐照下可能会导致帽的结构重排。

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