首页> 外文期刊>Journal of chemical theory and computation: JCTC >Two-Dimensional Electronic Spectroscopy of Benzene, Phenol, and Their Dimer: An Efficient First-Principles Simulation Protocol
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Two-Dimensional Electronic Spectroscopy of Benzene, Phenol, and Their Dimer: An Efficient First-Principles Simulation Protocol

机译:苯,苯酚及其二聚体的二维电子光谱:有效的第一性原理模拟方案

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摘要

First-principles simulations of two-dimensional electronic spectroscopy in the ultraviolet region (2DUV) require computationally demanding multiconfigurational approaches that can resolve doubly excited and charge transfer states, the spectroscopic fingerprints of coupled UV-active chromophores. Here, we propose an efficient approach to reduce the computational cost of accurate simulations of 2DUV spectra of benzene, phenol, and their dimer (i.e., the minimal models for studying electronic coupling of UV-chromophores in proteins). We first establish the multiconfigurational recipe with the highest accuracy by comparison with experimental data, providing reference gas-phase transition energies and dipole moments that can be used to construct exciton Hamiltonians involving high-lying excited states. We show that by reducing the active spaces and the number of configuration state functions within restricted active space schemes, the computational cost can be significantly decreased without loss of accuracy in predicting 2DUV spectra. The proposed recipe has been successfully tested on a realistic model proteic system in water. Accounting for line broadening due to thermal and solvent-induced fluctuations allows for direct comparison with experiments.
机译:二维电子光谱在紫外线区域(2DUV)的第一性原理模拟要求在计算上要求苛刻的多配置方法,该方法可以解决双激发态和电荷转移态,即耦合的紫外线活性发色团的光谱指纹。在这里,我们提出了一种有效的方法来减少对苯,苯酚及其二聚体的2DUV光谱进行精确模拟的计算成本(即用于研究蛋白质中UV发色团的电子偶联的最小模型)。我们首先通过与实验数据进行比较,建立具有最高准确度的多构型配方,提供可用于构建涉及高激发态的激子哈密顿量的参考气相转移能和偶极矩。我们表明,通过减少活动空间和受限活动空间方案内的配置状态函数的数量,可以显着降低计算成本,而不会降低预测2DUV光谱的准确性。建议的配方已在水中的真实模型蛋白质系统上成功测试。考虑到由于热和溶剂引起的波动而导致的谱线展宽,可以直接与实验进行比较。

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