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Mildly reduced graphene oxide-Ag nanoparticle hybrid films for surface-enhanced Raman scattering

机译:用于表面增强拉曼散射的轻度还原氧化石墨烯-Ag纳米颗粒杂化膜

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摘要

Large-area mildly reduced graphene oxide (MR-GO) monolayer films were self-assembled on SiO2/Si surfaces via an amidation reaction strategy. With the MR-GO as templates, MR-GO-Ag nanoparticle (MR-GO-Ag NP) hybrid films were synthesized by immersing the MR-GO monolayer into a silver salt solution with sodium citrate as a reducing agent under UV illumination. SEM image indicated that Ag NPs with small interparticle gap are uniformly distributed on the MR-GO monolayer. Raman spectra demonstrated that the MR-GO monolayer beneath the Ag NPs can effectively quench the fluorescence signal emitted from the Ag films and dye molecules under laser excitation, resulting in a chemical enhancement (CM). The Ag NPs with narrow gap provided numerous hot spots, which are closely related with electromagnetic mechanism (EM), and were believed to remarkably enhance the Raman signal of the molecules. Due to the co-contribution of the CM and EM effects as well as the coordination mechanism between the MR-GO and Ag NPs, the MR-GO-Ag NP hybrid films showed more excellent Raman signal enhancement performance than that of either Ag films or MR-GO monolayer alone. This will further enrich the application of surface-enhanced Raman scattering in molecule detection.
机译:通过酰胺化反应策略,将大面积轻度还原的氧化石墨烯(MR-GO)单层膜自组装在SiO2 / Si表面上。以MR-GO为模板,通过将MR-GO单层浸入柠檬酸钠作为还原剂的银盐溶液中,在紫外线照射下将MR-GO-Ag纳米颗粒(MR-GO-Ag NP)杂化膜合成。 SEM图像表明,颗粒间间隙小的Ag NPs均匀分布在MR-GO单层上。拉曼光谱表明,Ag NPs下面的MR-GO单层可以有效地猝灭在激光激发下从Ag膜和染料分子发出的荧光信号,从而产生化学增强(CM)。具有窄间隙的Ag NPs提供了许多热点,这些热点与电磁机制(EM)密切相关,并被认为可以显着增强分子的拉曼信号。由于CM和EM效应的共同贡献以及MR-GO和Ag NP之间的协调机制,MR-GO-Ag NP杂化膜的拉曼信号增强性能优于Ag膜或EM-Ag NP。 MR-GO单层。这将进一步丰富表面增强拉曼散射在分子检测中的应用。

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