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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Amplification of surface-enhanced Raman scattering due to substrate-mediated localized surface plasmons in gold nanodimers
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Amplification of surface-enhanced Raman scattering due to substrate-mediated localized surface plasmons in gold nanodimers

机译:由于衬底介导的金纳米体介导的局部表面等离子体引起的表面增强拉曼散射的扩增

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摘要

Surface-enhanced Raman scattering (SERS) is ubiquitous in chemical and biochemical sensing, imaging and identification. Maximizing the SERS enhancement is a continuous effort focused on the design of appropriate SERS substrates. Here we show that a significant improvement in a SERS signal can be achieved with substrates combining localized surface plasmon resonances and a nonresonant plasmonic substrate. By introducing a continuous gold (Au) film underneath Au nanodimer antenna arrays, over 10-fold increase in the SERS enhancement is demonstrated. Triangular, rectangle and disc dimers were studied, with the bowtie antenna providing the highest SERS enhancement. Simulations of electromagnetic field distributions of the Au nanodimers on the Au film support the observed enhancement dependences. The hybridization of localized plasmonic modes with the image modes in a metal film provides a straightforward way to improve the SERS enhancement in designer SERS substrates.
机译:表面增强的拉曼散射(SERS)在化学和生化传感,成像和鉴定中普遍存在。 最大化SERS增强是一种不断的努力,专注于设计适当的SERS基材。 在这里,我们表明,通过组合局部表面等离子体共振和非族代等离子体基板的基板可以实现SERS信号的显着改进。 通过在Au纳米体天线阵列下引入连续的金(Au)膜,SERs增强的增加超过10倍。 研究了三角形,矩形和光盘二聚体,蝴蝶结天线提供最高的SERS增强。 Au薄膜对Au膜上的电磁场分布的模拟支持观察到的增强依赖性。 用金属膜中的图像模式的局部等离子体模式的杂交提供了一种改进设计者SERS基板中的SERs增强的直接途径。

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