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Rapidly fabricating a large area nanotip microstructure for high-sensitivity SERS applications

机译:快速制作大面积nanotip微观结构对高灵敏度ser应用程序

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摘要

Here, we propose a novel nanotip microstructure which can be easily fabricated through a simply Reactive Ion Etching (RIE) process combined with anodic aluminum oxide (AAO) membranes. When combined with Ag coating and annealing on the surface of micro-sized nanotip arrays, the as-formed Ag-nanoparticles (Ag-NPs)/Si-nanotip hybrid structure exhibited a significantly high enhancement factor and highly sensitive surface enhanced Raman scattering (SERS) for rhodamine 6G molecules. The nanotip microstructure showed a sharp curvature with an apex diameter which significantly affected the SERS results. The Ag-NPs/Si-nanotip hybrid structure verified a very prominent "hot spot" effect that exists around the nanotip structures, which contributed mainly to an enhanced SERS signal with an enhancement factor (EF) of 1.6 x 10(6). Moreover, the Ag-NPs/Si-nanotip hybrid structure demonstrated superior sensitivity, with obvious featured Raman peaks even when the concentration was as low as 10(-10) M. Our work demonstrated a feasible way to prepare a novel nanotip microstructure with a highly localized surface plasmon resonance response which could be feasibly applied for highly sensitive and reproducible SERS applications.
机译:在这里,我们提出一个小说nanotip微观结构可以通过一个简单容易伪造的反应离子刻蚀(RIE)结合的过程阳极氧化铝(氧化铝)膜。结合Ag)涂层和退火微粒表面nanotip数组混合结构表现出相当高的增强因子和高度敏感的表面增强拉曼散射(ser)对若丹明6 g分子。曲率的顶端直径显著影响ser的结果。Ag-NPs / Si-nanotip混合结构验证非常著名的“热点”效应的存在在nanotip结构,做出了贡献主要是一个增强的ser的信号增强因子(EF) 1.6 x 10(6)。Ag-NPs / Si-nanotip混合结构展示了卓越的敏感性,与明显拉曼峰即使浓度低至10 (-10)m .我们的工作证明吗准备一本小说nanotip可行的方法用高度本地化的表面微观结构这可能是等离子体共振响应轻松申请和高度敏感可再生的ser应用程序。

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