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High Aspect-Ratio Iridium-Coated Nanopillars for Highly Reproducible Surface-Enhanced Raman Scattering (SERS)

机译:高长宽比铱涂层纳米柱,可高度再现的表面增强拉曼散射(SERS)

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摘要

A variety of different gold and silver nanostructures have been proposed over the years as high sensitivity surface-enhanced Raman scattering (SERS) sensors. However, efficient use of SERS has been hindered by the difficulty of realizing SERS substrates that provide reproducible SERS response over the whole active area. Here, we show that atomic layer deposition (ALD) grown iridium Can be used to produce highly reliable SERS substrates, The substrates are-based on la periodic array of high aspect-ratio iridium coated nanopillars that feature efficient and symmetrically distributed hot spots within the interpillar gaps (gap width < 10 nm). We show that the enhancement with the iridium based nanostructures is of significant magnitude and it equals the enhancement of silver based reference substrates : Most notably, we demonstrate that the ordered and well-defined plasmonic nanopillars offer a measurement-to-measurement variability of 5%, which paves the way for truly quantitative SERS measurements.
机译:多年来,已经提出了各种不同的金和银纳米结构作为高灵敏度表面增强拉曼散射(SERS)传感器。然而,由于难以实现在整个有效区域上提供可再现的SERS响应的SERS底物,阻碍了SERS的有效使用。在这里,我们证明了原子层沉积(ALD)生长的铱可用于生产高度可靠的SERS衬底。该衬底基于高纵横比的铱涂层纳米柱的周期性阵列,这些纳米柱的特征是在硅片内高效且对称分布的热点柱间间隙(间隙宽度<10 nm)。我们表明,铱基纳米结构的增强作用显着,它等于银基参考底物的增强:最显着的是,我们证明有序且定义明确的等离激元纳米柱提供了5%的测量差异,这为真正定量SERS测量铺平了道路。

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