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Elevated gold ellipse nanoantenna dimers as sensitive and tunable surface enhanced Raman spectroscopy substrates

机译:高黄金椭圆nanoantenna二聚体敏感和可调的表面增强拉曼光谱学基质

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摘要

We demonstrate large area arrays of elevated gold ellipse dimers with precisely controlled gaps for use as sensitive and highly controllable surface enhanced Raman scattering (SERS) substrates. The enhanced Raman signal observed with SERS arises from both localized and long range plasmonic effects. By controlling the geometry of a SERS substrate, in this case the size and aspect ratio of individual ellipses, the plasmon resonance can be tuned in a broad wavelength range, providing a method for designing the response of SERS substrates at different excitation wavelengths. Plasmon effects exhibited by the elevated gold ellipse dimer substrates are also demonstrated and confirmed through finite difference time domain (FDTD) simulations. A plasmon resonance red shift with an increase of the ellipse aspect ratio is observed, allowing systematic control of the resulting SERS signal intensity. Optimized elevated ellipse dimer substrates with 10 +/- 2 nm gaps exhibit uniform SERS enhancement factors on the order of 10(9) for adsorbed p-mercaptoaniline molecules.
机译:我们将演示大面积阵列高金的椭圆二聚体与精确控制差距作为敏感和高度可控的表面增强拉曼散射(ser)基质。增强拉曼信号观察ser出现从局部和远程电浆效果。衬底,在这种情况下,大小和长宽比个人的椭圆,等离子体共振在一个广泛的波长调谐范围,提供一个ser的反应的设计方法基板在不同激发波长。等离子体效应表现出升高的黄金椭圆二聚体基质也证明并通过有限差分时间确认域(FDTD)模拟。红移的增加椭圆方面比例是观察,允许系统的控制由此产生的ser信号强度。椭圆升高二聚体基质与10 + / - 2纳米缝隙展览制服ser增强因素10(9)的吸附p-mercaptoaniline分子。

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