Bhattarai Ashish, Cheng Zhihua, Joly Alan G, Novikova Irina V, Evans James E, Schultz Zachary D, Jones Matthew R, El-Khoury Patrick Z
Physical Sciences Division, Pacific Northwest National Laboratory, P.O. Box 999, Richland, Washington 99352, United States.
Department of Chemistry, Department of Materials Science & Nanoengineering, Rice University, 6100 Main Street, Houston, Texas 77005, United States.
J Phys Chem Lett. 2020 Mar 5;11(5):1795-1801. doi: 10.1021/acs.jpclett.0c00217. Epub 2020 Feb 20.
We record nanoscale-resolved chemical images of thiobenzonitrile (TBN)-functionalized smooth gold nanospheres on silicon via tip-enhanced Raman (TER) nanospectroscopy. The recorded images trace the nascence of the familiar doughnut-shaped scattering profile of nanoparticles on silicon at its origin (the particle surface), which appears as a horseshoe-shaped scattering pattern under our experimental conditions. The local optical field maps are in agreement with their simulated finite-difference time-domain analogues. Analysis of the recorded spectra with the aid of -molecular-dynamics-based Raman spectral simulations further suggests that optical rectification and molecular charging take place throughout the course of atomic-force-microscopy-based TER nanoscale chemical imaging.
我们通过针尖增强拉曼(TER)纳米光谱记录了硅表面硫代苯甲腈(TBN)功能化的光滑金纳米球的纳米级分辨化学图像。所记录的图像追踪了硅上纳米颗粒常见的甜甜圈形状散射轮廓在其起源处(颗粒表面)的形成过程,在我们的实验条件下,该轮廓呈现为马蹄形散射图案。局部光场图与其模拟的时域有限差分类似物一致。借助基于分子动力学的拉曼光谱模拟对记录的光谱进行分析,进一步表明在基于原子力显微镜的TER纳米级化学成像过程中发生了光整流和分子充电。