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首页> 外文期刊>Nanoscale >Dynamic plasmonic nano-traps for single molecule surface-enhanced Raman scattering
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Dynamic plasmonic nano-traps for single molecule surface-enhanced Raman scattering

机译:动态电浆nano-traps单分子表面增强拉曼散射

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Intense electric fields at the nanoscale are essential for single molecule surface-enhanced Raman scattering (SERS) detection. Such fields can be achieved in plasmonic nano-gaps between nanoparticles and metal films through hybridization of surface plasmons. The nano-gaps could be formed and dynamically controlled by using plasmonic tweezers; however, the aggregation of particles in the plasmonic field degrades each particle's enhancement and spoils the nanosized-spatial resolution. Here, dual-plasmonic tweezers are proposed and demonstrated to accurately control the number of nano-gaps and enhancement by tailoring a crater-shaped potential well in the nano-trap system. As the electric field in the nano-gap is intense, SERS spectral signatures of a single molecular level are probed simultaneously. These advantages point towards the implementation of enhanced Raman spectra, and broad applications in optical molecular detection.
机译:强烈的电场在纳米尺度上单分子表面增强的必要条件喇曼散射(ser)检测。在电浆nano-gaps能够实现什么纳米颗粒和金属的电影表面电浆子的杂交。可以形成和动态控制的吗使用电浆镊子;聚合粒子的电浆降低每个粒子的增强和战利品nanosized-spatial分辨率。提出了dual-plasmonic镊子了精确控制的数量nano-gaps和增强通过裁剪nano-trap crater-shaped势阱系统。激烈,单一的ser的光谱特征同时分子水平探索。优势指向的实现增强拉曼光谱和广泛的应用光学分子检测。

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