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通过分子TERS对功能化银纳米线的光场进行成像。

Imaging the Optical Fields of Functionalized Silver Nanowires through Molecular TERS.

作者信息

Bhattarai Ashish, Crampton Kevin T, Joly Alan G, Kovarik Libor, Hess Wayne P, El-Khoury Patrick Z

出版信息

J Phys Chem Lett. 2018 Dec 20;9(24):7105-7109. doi: 10.1021/acs.jpclett.8b03324. Epub 2018 Dec 7.

Abstract

We image 4-mercaptobenzonitrile-functionalized silver nanowires (∼20 nm diameter) through tip-enhanced Raman scattering (TERS). The enhanced local optical field-molecular interactions that govern the recorded hyperspectral TERS images are dissected through hybrid finite-difference time-domain density functional theory simulations. Our forward simulations illustrate that the recorded spatiospectral profiles of the chemically functionalized nanowires may be reproduced by accounting for the interaction between orientationally averaged molecular polarizability derivative tensors and enhanced incident/scattered local fields polarized along the tip axis. In effect, we directly map the enhanced optical fields of the nanowire in real space through TERS. The simultaneously recorded atomic force microscopy (AFM) images allow a direct comparison between our attainable spatial resolution in topographic (13 nm) and TERS (5 nm) imaging measurements performed under ambient conditions. Overall, our described protocol enables local electric field imaging with few nm precision through molecular TERS, and it is therefore generally applicable to a variety of plasmonic nanostructures.

摘要

我们通过针尖增强拉曼散射(TERS)对4-巯基苯甲腈功能化的银纳米线(直径约20纳米)进行成像。通过混合时域有限差分密度泛函理论模拟,剖析了控制所记录的高光谱TERS图像的增强局部光场-分子相互作用。我们的正向模拟表明,通过考虑取向平均分子极化率导数张量与沿针尖轴极化的增强入射/散射局部场之间的相互作用,可以再现化学功能化纳米线所记录的空间光谱轮廓。实际上,我们通过TERS直接在实空间中绘制纳米线的增强光场。同时记录的原子力显微镜(AFM)图像允许直接比较在环境条件下进行的形貌(13纳米)和TERS(5纳米)成像测量中我们可达到的空间分辨率。总体而言,我们所描述的方案能够通过分子TERS实现具有纳米级精度的局部电场成像,因此通常适用于各种等离子体纳米结构。

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