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首页> 外文期刊>International Journal of Quantum Chemistry >Simulating vertical excitation energies of solvated dyes: From continuum to polarizable discrete modeling
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Simulating vertical excitation energies of solvated dyes: From continuum to polarizable discrete modeling

机译:模拟溶剂化染料的垂直励磁能量:从连续轴到可极化的离散建模

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摘要

>We present a computational study on the spectroscopic properties of UV‐Vis absorbing dyes in water solution. We model the solvation environment by using both continuum and discrete models, with and without polarization, to establish how the physical and chemical properties of the solute–solvent interaction may affect the spectroscopic response of aqueous systems. Seven different compounds were chosen, representing different classes of organic molecules. The classical atomistic description of the solvent molecules was enriched with polarization effects treated by means of the fluctuating charges (FQ) model, propagated to the first‐order response function of the quantum‐mechanical (QM) solute to include its effects withing the modeling of the electronic excitations of the systems. Results obtained with the QM/FQ model were compared with those from continuum solvation models as well as nonpolarizable atomistic models, and then confronted with the experimental values to determine the accuracy that can be expected with each level of theory. Moreover, a thorough structural analysis using molecular dynamics simulations is provided for each system.
机译:

我们提出了对水溶液中UV-Vis吸收染料的光谱性质的计算研究。我们通过使用连续体和离散模型,具有和无极化的不同模型来建立溶剂化环境,以确定溶质 - 溶剂相互作用的物理和化学性质如何影响含水体系的光谱响应。选择七种不同的化合物,代表不同类别的有机分子。溶剂分子的经典原子描述富含溶剂分子的富溶剂效应,通过波动电荷(FQ)模型处理,传播到量子 - 机械(QM)溶质的一阶响应函数,以包括其效果系统的电子激发。将QM / FQ模型获得的结果与来自连续溶剂化模型以及不可均匀的原子模型进行比较,然后面对实验值,以确定每个理论水平可以预期的准确性。此外,为每个系统提供了使用分子动力学模拟的彻底结构分析。

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