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An ordered mesoporous Ag superstructure synthesized via a template strategy for surface-enhanced Raman spectroscopy

机译:有序介孔Ag)上层建筑通过模板合成策略表面增强拉曼光谱

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Surface-enhanced Raman scattering (SERS) substrates with high density and uniformity of nanogaps are proven to enhance the reproducibility and sensitivity of the Raman signal. Up to now, the syntheses of a highly ordered gold or silver superstructure with a controllable nanoparticle size and a well-defined particle gap have been quite limited. Here, we reported an ordered mesoporous silver superstructure replicated by using ordered mesoporous KIT-6 and SAB-15 as templates. By means of a nanocasting process, the ordered mesoporous Ag superstructure was successfully synthesized, which shows uniform distribution of the nanowire diameter (10 nm) and nanogap size (similar to 2 nm), thus exhibiting a high Raman enhancement of similar to 10(9). The finite difference time-domain (FDTD) results indicate that the ordered mesoporous Ag superstructure has a uniform distribution of hot spots. Therefore, the mesoporous silica template strategy presented here could lead to a new class of high quality SERS substrates providing extraordinary potential for diverse applications.
机译:表面增强拉曼散射(ser)基板具有高的密度和均匀性nanogaps被证明能提高再现性和拉曼的敏感性信号。有序的金或银的上层建筑可控的纳米颗粒大小和一个定义良好的粒子的差距是相当有限的。报道有序介孔银上层建筑通过使用复制命令介孔KIT-6和SAB-15模板。意味着nanocasting过程,有序介孔Ag)上层建筑是成功合成,显示均匀分布的纳米线直径(10 nm)和nanogap大小(类似于2 nm),从而表现出很高的拉曼增强的类似于10(9)。应用时域有限差分结果显示有序介孔Ag)的上层建筑均匀分布的热点。介孔二氧化硅模板策略这可能会导致高质量的新类ser基质提供非凡的潜力对于不同的应用程序。

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