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银纳米棒阵列的各向异性光学响应:与椭圆偏振参数对比的表面增强拉曼散射偏振和角度依赖性。

Anisotropic Optical Response of Silver Nanorod Arrays: Surface Enhanced Raman Scattering Polarization and Angular Dependences Confronted with Ellipsometric Parameters.

机构信息

Charles University, Faculty of Mathematics and Physics, Institute of Physics, Ke Karlovu 5, 121 16, Prague, Czech Republic.

Charles University, Faculty of Mathematics and Physics, Department of Macromolecular Physics, V Holešovičkách 2, 180 00, Prague, Czech Republic.

出版信息

Sci Rep. 2017 Jun 27;7(1):4293. doi: 10.1038/s41598-017-04565-0.

Abstract

Silver nanorod arrays prepared by oblique angle deposition (AgOADs) represent versatile, simple and inexpensive substrates for high sensitivity surface enhanced Raman scattering (SERS) applications. Their anisotropic nature suggests that their optical responses such as the SERS signal, the depolarization ratio, reflectivity and ellipsometric parameters critically depend on the states of polarization, nanorod angular arrangement and specific illumination-observation geometry. SERS polarization and angular dependences of AgOADs were measured using methylene blue (MB) molecule. Our study constitutes, to our knowledge, the most detailed investigation of such characteristics of plasmonic nanostructures to date. This is due to the 90°-scattering geometry used in which two out of three Euler angles determining the nanorod spatial orientation and four polarization combinations can be varied simultaneously. We attributed the anisotropic optical response to anisotropic (pseudo)refractive index caused by different periodicity of our structures in different directions since the plasmonic properties were found rather isotropic. For the first time we demonstrate very good correspondence between SERS intensities and ellipsometric parameters for all measured configurations as compared on the basis of the surface selection rules. Obtained results enable quantitative analysis of MB Raman tensor elements, indicating that the molecules adsorb predominantly with the symmetry axis perpendicular to the surface.

摘要

通过斜角沉积(AgOAD)制备的银纳米棒阵列是用于高灵敏度表面增强拉曼散射(SERS)应用的多功能、简单且廉价的基底。其各向异性表明其光学响应,如 SERS 信号、退偏比、反射率和椭圆偏振参数,严重依赖于偏振状态、纳米棒角排布和特定的照明-观察几何形状。使用亚甲蓝(MB)分子测量了 AgOAD 的 SERS 偏振和角度依赖性。据我们所知,这是迄今为止对等离子体纳米结构这些特性的最详细研究。这是由于使用了 90°散射几何,其中可以同时改变三个确定纳米棒空间取向的欧拉角中的两个和四个偏振组合。我们将各向异性的光学响应归因于由于我们的结构在不同方向上具有不同的周期性而导致的各向异性(拟)折射率,因为发现等离子体特性相当各向同性。我们首次证明了在基于表面选择规则的所有测量配置中,SERS 强度和椭圆偏振参数之间非常好的对应关系。获得的结果能够对 MB 拉曼张量元素进行定量分析,表明分子主要以垂直于表面的对称轴吸附。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3179/5487367/6752800d3ab7/41598_2017_4565_Fig1_HTML.jpg

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