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用于表面增强拉曼散射的纳米结构基底中局域等离激元的调控

Tuning localized plasmons in nanostructured substrates for surface-enhanced Raman scattering.

作者信息

Perney Nicolas M B, Baumberg Jeremy J, Zoorob Majd E, Charlton Martin D B, Mahnkopf Sven, Netti Caterina M

出版信息

Opt Express. 2006 Jan 23;14(2):847-57. doi: 10.1364/opex.14.000847.

Abstract

Comprehensive reflectivity mapping of the angular dispersion of nanostructured arrays comprising of inverted pyramidal pits is demonstrated. By comparing equivalently structured dielectric and metallic arrays, diffraction and plasmonic features are readily distinguished. While the diffraction features match expected theory, localised plasmons are also observed with severely flattened energy dispersions. Using pit arrays with identical pitch, but graded pit dimensions, energy scaling of the localized plasmon is observed. These localised plasmons are found to match a simple model which confines surface plasmons onto the pit sidewalls thus allowing an intuitive picture of the plasmons to be developed. This model agrees well with a 2D finite-difference time-domain simulation which shows the same dependence on pit dimensions. We believe these tuneable plasmons are responsible for the surface-enhancement of the Raman scattering (SERS) of an attached layer of benzenethiol molecules. Such SERS substrates have a wide range of applications both in security, chemical identification, environmental monitoring and healthcare.

摘要

展示了对由倒金字塔形凹坑组成的纳米结构阵列的角色散进行全面反射率映射。通过比较等效结构的介电和金属阵列,可以很容易地区分衍射和等离子体特征。虽然衍射特征符合预期理论,但也观察到具有严重扁平能量色散的局域等离子体。使用具有相同间距但凹坑尺寸渐变的凹坑阵列,观察到了局域等离子体的能量缩放。发现这些局域等离子体与一个简单模型相匹配,该模型将表面等离子体限制在凹坑侧壁上,从而可以直观地了解等离子体的情况。该模型与二维时域有限差分模拟结果吻合良好,模拟结果显示了对凹坑尺寸的相同依赖性。我们认为这些可调谐等离子体是附着的苯硫醇分子层拉曼散射(SERS)表面增强的原因。这种SERS基底在安全、化学识别、环境监测和医疗保健等方面都有广泛的应用。

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