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Surface-Enhanced Raman Scattering Sensor Based on Silver Dendritic Nanostructures

机译:基于银树枝状纳米结构的表面增强拉曼散射传感器

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Based on the diffusion-limited aggregation process, a convenient self-selective electroless plating nanotechnique is demonstrated to yield silver dendritic nanostructures. Localization of the optical eigenmodes and associated strong field fluctuations can lead to dramatic surface-enhanced Raman scattering (SERS) in the silver dendrites. The finite difference time domain calculation and Raman measurements using Rhodamine 6G as the probing molecule indicate that the intensity of the enhanced-Raman signals has an obvious dependence on the structures of the silver dendrites. To further explore the use of dendritic silver nanostructures to detect biomolecules, the native DNA base adenine and adenosine were also examined. The present methodology demonstrates that silver dendritic nanostructures have high potential in optical chemical and biological sensing applications.
机译:基于扩散限制的聚集过程,便利的自选择化学镀纳米技术被证明可以产生银树枝状纳米结构。光学本征模的局限性和相关的强场波动会导致银树突中剧烈的表面增强拉曼散射(SERS)。使用罗丹明6G作为探测分子的时差有限差分计算和拉曼测量表明,增强拉曼信号的强度与银枝晶的结构具有明显的相关性。为了进一步探索使用树枝状银纳米结构检测生物分子,还检查了天然DNA碱基腺嘌呤和腺苷。本方法论证明,银树枝状纳米结构在光学化学和生物传感应用中具有很高的潜力。

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