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Plasmonic In Metallic Nanostructures - Fabrication, Characterization and Applications in Surface-Enhanced Spectroscopy

机译:质脂纳米结构中的等离子体 - 表面增强光谱法的制造,表征和应用

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We are witnessing a rapid and ongoing expansion of nanoscience, driven by potential applications in advanced materials and nanotechnology. There is a race to develop techniques that may allow controlling the size, shape of nanostructures that can allow the tuning of their optical and electronic properties. Plasmonics is a field that encompasses and profits from the optical enhancement in nanostructures that support plasmon excitations. One of these new techniques is surface-enhanced Raman scattering (SERS), commonly used for nanostructure characterization. In the present report, we present a theoretical model for plasmon excitation and electric field enhancement that help to provide an explanation for the special features observed in experimental SERS. Two sets of experimental results are discussed illustrating the make out of the signature of the plasmonics producing the optical enhancement. The nanostructures used are silver colloids in dynamics experiments and spin-coated metal island films.
机译:我们目睹了纳米科学的快速和持续扩张,由先进材料和纳米技术的潜在应用驱动。有一种种族来开发可以允许控制尺寸,纳米结构的形状可以允许调谐其光学和电子特性的技术。血浆是一种涵盖和利润从支持等离子体激励的纳米结构中的光学增强的领域。其中一种新技术是表面增强的拉曼散射(SERS),通常用于纳米结构表征。在本报告中,我们为等离子体激发和电场增强提供了一种理论模型,有助于提供对实验SERS中观察到的特殊特征的解释。讨论了两组实验结果,说明了产生光学增强的签名的制造。使用的纳米结构是动力学实验和旋涂金属岛薄膜中的银胶体。

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