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首页> 外文期刊>Bulletin of the Korean Chemical Society >Au Nanocucumbers with Interior Nanogap for Multiple Laser Wavelength-Compatible Surface-Enhanced Raman Scattering
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Au Nanocucumbers with Interior Nanogap for Multiple Laser Wavelength-Compatible Surface-Enhanced Raman Scattering

机译:具有内部纳米间隙的Au纳米黄瓜,可用于多种激光波长兼容的表面增强拉曼散射

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摘要

It is critical to design and synthesize plasmonic nanostructures that can generate very strong and quantitative surface-enhanced Raman scattering (SERS) signals that could be amplified by multiple laser wavelengths to realize the full potential of SERS nanoprobes. Here, we report the synthesis of Au-nanobridged nanogap cucumbers (Au-NNCs) from DNA-modified Au nanorods and comparison of their SERS signals with three different Raman dyes with our recently reported Au-nanobridged nanogap spheres (Au-NNSs). Although the Au-NNSs generate highly stable and reliable signals, these spherical nanogap structures with a smooth surface produce strong SERS signals (SERS enhancement factor at similar to 10(8)) only with 633 nm excitation laser. The Au-NNCs with a bumpy surface generated up to similar to 3-, similar to 23-, and similar to 130-fold higher SERS signals with 514, 633, and 785 nm excitation laser wavelengths, respectively, compared to the Au-NNSs.
机译:设计和合成可产生非常强且定量的表面增强拉曼散射(SERS)信号的等离激元纳米结构至关重要,该信号可以被多个激光波长放大,以实现SERS纳米探针的全部潜力。在这里,我们报告由DNA修饰的金纳米棒合成金纳米桥纳米间隙黄瓜(Au-NNCs),并将它们的SERS信号与三种不同的拉曼染料与我们最近报道的金纳米桥纳米间隙球(Au-NNSs)进行比较。尽管Au-NNS产生高度稳定和可靠的信号,但这些具有光滑表面的球形纳米间隙结构仅在633 nm激发激光下产生强SERS信号(SERS增强因子与10(8)相似)。与Au-NNS相比,具有凹凸表面的Au-NNC分别产生高达514,633和785 nm激发激光波长的近似于3,近似23和近似130倍的更高SERS信号。

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