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Glass-coated, analyte-tagged nanoparticles: A new tagging system based on detection with surface-enhanced Raman scattering

机译:玻璃涂层的,带有分析物标签的纳米颗粒:一种基于表面增强拉曼散射检测的新型标签系统

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摘要

Glass-coated, analyte-tagged nanoparticles (GANs) are core-shell particles where a nanometer-scale Au or Ag core is functionalized with Raman active molecules and encapsulated in a glass shell. The glass shell provides the particle with mechanical and chemical stability. Specifically, the glass coating renders the particle amenable to use in many solvents without altering the Raman spectral response and makes agglomeration a nonfactor. The density and thickness of the glass shell are controllable through synthetic conditions; thus, the rate of diffusion through the silica network can be tuned and the metal cores kept sequestered from any exterior reaction. This will allow for the attachment of biomolecules to the glass shell without altering the Raman response. GANs can be identified by the Raman spectrum of the attached Raman tag, and two differently labeled samples are unambiguously identified. The scattering from the Raman tag is amplified through surface-enhanced Raman scattering. The narrow bandwidth (similar to20 cm(-1)) of the Raman peaks and fingerprint-like spectra will allow multiple Raman tags to be simultaneously evaluated with a single excitation source. [References: 59]
机译:玻璃涂层的,带有分析物标签的纳米颗粒(GAN)是核-壳颗粒,其中纳米级的Au或Ag核被拉曼活性分子官能化并封装在玻璃壳中。玻璃壳为颗粒提供机械和化学稳定性。具体而言,玻璃涂层使粒子适合在许多溶剂中使用而不会改变拉曼光谱响应,并使附聚成为非因素。玻璃壳的密度和厚度可通过合成条件控制;因此,可以调节通过二氧化硅网络的扩散速率,并使金属核保持隔离于任何外部反应。这将使生物分子附着在玻璃壳上而不会改变拉曼响应。可以通过附着的拉曼标签的拉曼光谱来识别GAN,并且可以明确识别两个不同标记的样品。来自拉曼标签的散射通过表面增强拉曼散射得到放大。拉曼峰的窄带宽(类似于20 cm(-1))和类似指纹的光谱将允许使用单个激发源同时评估多个拉曼标签。 [参考:59]

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