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Surface-Enhanced Raman Spectroscopy as a Tool for Characterizing Nanostructures Containing Molecular Components

机译:表面增强的拉曼光谱作为用于表征含有分子组分的纳米结构的工具

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Raman spectroscopy, which is based on inelastic scattering of light that interacts with phonons or molecular vibrations in the nanostructure, has been widely used to identify chemical and biological molecules. Surface-Enhanced Raman Spectroscopy (SERS) greatly enhanced the sensitivity of conventional Raman spectroscopy by a factor of >10~6 through the use of a plasmon-generating substrate [1, 2]. This study investigated the use of Raman spectroscopy/SERS to verify that synthesized nanostructures contain active molecular components critical to their functioning. In particular, this study uses SERS to identify the signature spectrum of Methylene Blue (MB) and uses standard Raman spectroscopy to verify the fictionalization of a DNA aptamer terminated with MB.
机译:拉曼光谱基于与纳米结构中的声子或分子振动相互作用的光的非弹性散射,已被广泛用于鉴定化学和生物分子。表面增强拉曼光谱(SERS)通过使用等离子体产生基板[1,2],大大提高了常规拉曼光谱的灵敏度> 10〜6。本研究研究了使用拉曼光谱/ SER来验证合成的纳米结构含有关键的活性分子组分对其功能至关重要。特别是,该研究使用SER来识别亚甲基蓝(MB)的签名光谱,并使用标准拉曼光谱,以验证用MB终止的DNA适体的虚拟化。

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