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单分子拉曼散射的时域模拟

Time Domain Simulations of Single Molecule Raman Scattering.

作者信息

Aprà Edoardo, Bhattarai Ashish, Crampton Kevin T, Bylaska Eric J, Govind Niranjan, Hess Wayne P, El-Khoury Patrick Z

出版信息

J Phys Chem A. 2018 Sep 20;122(37):7437-7442. doi: 10.1021/acs.jpca.8b05912. Epub 2018 Sep 5.

Abstract

Nonequilibrium chemical phenomena are known to play an important role in single molecule microscopy and spectroscopy. Herein, we explore these effects through ab initio molecular dynamics (AIMD)-based Raman spectral simulations. We target an isolated aromatic thiol (thiobenzonitrile, TBN) as a prototypical molecular system. We first show that the essential features contained in the ensemble-averaged Raman spectrum of TBN can be reproduced by averaging over 18 short AIMD trajectories spanning a total simulation time of ∼60 ps. This involved more than 90 000 polarizability calculations at the B3LYP/def2-TZVP level of theory. We then illustrate that the short trajectories (∼3.3 ps total simulation time), where the accessible phase space is not fully sampled, provide a starting point for understanding key features that are often observed in measurements targeting single molecules. Our results suggest that a complete understanding of single molecule Raman scattering needs to account for molecular conformational flexibility and nonequilibrium chemical phenomena in addition to local optical fields and modified selection rules. The former effects are well-captured using the described AIMD-based single molecule Raman spectral simulations.

摘要

已知非平衡化学现象在单分子显微镜和光谱学中起着重要作用。在此,我们通过基于从头算分子动力学(AIMD)的拉曼光谱模拟来探究这些效应。我们将孤立的芳香硫醇(硫代苯甲腈,TBN)作为典型分子体系。我们首先表明,通过对18条短的AIMD轨迹进行平均(总模拟时间约为60皮秒),可以重现TBN系综平均拉曼光谱中包含的基本特征。这涉及在B3LYP/def2-TZVP理论水平上进行超过90000次极化率计算。然后我们说明,在可及相空间未被充分采样的短轨迹(总模拟时间约为3.3皮秒)为理解在单分子测量中经常观察到的关键特征提供了一个起点。我们的结果表明,除了局部光场和修正的选择规则外,对单分子拉曼散射的完整理解还需要考虑分子构象灵活性和非平衡化学现象。使用所描述的基于AIMD的单分子拉曼光谱模拟可以很好地捕捉到前一种效应。

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