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Ultrathin diamond-like carbon film coated silver nanoparticles-based substrates for surface-enhanced raman spectroscopy

机译:表面增强拉曼光谱的超薄类金刚石碳膜涂覆的银纳米颗粒基底

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摘要

We have demonstrated that by coating with a thin dielectric layer of tetrahedral amorphous carbon (ta-C), a biocompatible and optical transparent material in the visible range, the Ag nanoparticle-based substrate becomes extremely suitable for surface-enhanced Raman spectroscopy (SERS). Our measurements show that a 10 ? or thicker ta-C layer becomes efficient to protect the oxygen-free Ag in air and prevent Ag ionizing in aqueous solutions. Furthermore, the Ag nanoparticles substrate coated with a 10 ? ta-C film shows a higher enhancement of Raman signals than the uncoated substrate. These observations are further supported by our numerical simulations. We suggest that biomolecule detections in analytic assays could be easily realized using ta-C-coated Ag-based substrate for SERS especially in the visible range. The coated substrate also has higher mechanical stability, chemical inertness, and technological compliance, and may be useful, for example, to enhance TiO _2 photocatalysis and solar-cell efficiency by the surface plasmons.
机译:我们已经证明,通过在可见范围内涂覆一层薄的四面体无定形碳(ta-C),生物相容性和光学透明材料的介电层,基于Ag纳米粒子的基底变得非常适合表面增强拉曼光谱(SERS) 。我们的测量结果显示10?或较厚的ta-C层可有效保护空气中的无氧Ag,并防止Ag在水溶液中离子化。此外,用10μm的Ag纳米颗粒基底涂覆。 ta-C膜比未涂覆的基底显示出更高的拉曼信号增强。这些观察结果得到了我们数值模拟的进一步支持。我们建议使用ta-C涂层的基于Ag的SERS底物,特别是在可见光范围内,可以轻松实现分析测定中的生物分子检测。涂覆的基材还具有较高的机械稳定性,化学惰性和技术依从性,并且可用于例如增强表面等离子体激元对TiO _2的光催化和太阳能电池效率。

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