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Surface-enhanced Raman nanodomes

机译:表面增强拉曼纳米域

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摘要

We demonstrate a surface-enhanced Raman scattering (SERS) substrate consisting of a closely spaced metal nanodome array fabricated on flexible plastic film. We used a low-cost, large-area replica molding process to produce a two-dimensional periodic array of cylinders that is subsequently overcoated with SiO_2 and silver thin films to form dome-shaped structures. Finite element modeling was used to investigate the electromagnetic field distribution of the nanodome array structure and the effect of the nanodome separation distance on the electromagnetic field enhancement. The SERS enhancement from the nanodome array substrates was experimentally verified using rhodamine 6G as the analyte. With a separation distance of 17 nm achieved between adjacent domes using a process that is precisely controlled during thin film deposition, a reproducible SERS enhancement factor of 1.37 × 10 ~8 was demonstrated. The nanoreplica molding process presented in this work allows for simple, low-cost, high-throughput fabrication of uniform nanoscale SERS substrates over large surface areas without the requirement for high resolution lithography or defect-free deposition of spherical microparticle monolayer templates.
机译:我们演示了一种表面增强拉曼散射(SERS)基底,该基底由在柔性塑料薄膜上制造的紧密间隔的金属纳米球阵列组成。我们使用了一种低成本,大面积的复制模制工艺来生产圆柱的二维周期性阵列,然后在其上涂覆SiO_2和银薄膜以形成圆顶状结构。有限元建模被用来研究纳米球阵列结构的电磁场分布以及纳米球间隔距离对电磁场增强的影响。使用罗丹明6G作为分析物,通过实验验证了来自纳米球阵列基板的SERS增强。通过在薄膜沉积过程中精确控制的过程,在相邻圆顶之间实现了17 nm的分离距离,证明了可重现的SERS增强因子为1.37×10〜8。在这项工作中提出的纳米复制品成型工艺允许在大表面积上简单,低成本,高通量地制造均匀的纳米级SERS基板,而无需高分辨率光刻或球形微粒单层模板的无缺陷沉积。

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