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Solvent effect on the absorption spectra of coumarin 120 in water: A combined quantum mechanical and molecular mechanical study

机译:溶剂对香豆素120吸收光谱的影响:量子力学和分子力学的组合研究

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The solvent effect on the absorption spectra of coumarin 120 (C120) in water was studied utilizing the combined quantum mechanicalmolecular mechanical (QMMM) method. In molecular dynamics (MD) simulation, a new sampling scheme was introduced to provide enough samples for both solute and solvent molecules to obtain the average physical properties of the molecules in solution. We sampled the structure of the solute and solvent molecules separately. First, we executed a QMMM MD simulation, where we sampled the solute molecule in solution. Next, we chose random solute structures from this simulation and performed classical MD simulation for each chosen solute structure with its geometry fixed. This new scheme allowed us to sample the solute molecule quantum mechanically and sample many solvent structures classically. Excitation energy calculations using the selected samples were carried out by the generalized multiconfigurational perturbation theory. We succeeded in constructing the absorption spectra and realizing the red shift of the absorption spectra found in polar solvents. To understand the motion of C120 in water, we carried out principal component analysis and found that the motion of the methyl group made the largest contribution and the motion of the amino group the second largest. The solvent effect on the absorption spectrum was studied by decomposing it in two components: the effect from the distortion of the solute molecule and the field effect from the solvent molecules. The solvent effect from the solvent molecules shows large contribution to the solvent shift of the peak of the absorption spectrum, while the solvent effect from the solute molecule shows no contribution. The solvent effect from the solute molecule mainly contributes to the broadening of the absorption spectrum. In the solvent effect, the variation in C-C bond length has the largest contribution on the absorption spectrum from the solute molecule. For the solvent effect on the absorption spectrum from the solvent molecules, the solvent structure around the amino group of C120 plays the key role.
机译:利用组合量子力学-分子力学(QMMM)方法研究了溶剂对香豆素120(C120)在水中吸收光谱的影响。在分子动力学(MD)模拟中,引入了一种新的采样方案,以为溶质和溶剂分子提供足够的样品,以获得溶液中分子的平均物理性质。我们分别采样了溶质和溶剂分子的结构。首先,我们执行了QMMM MD模拟,在其中对溶液中的溶质分子进行了采样。接下来,我们从该模拟中选择随机溶质结构,并在几何形状固定的情况下对每个所选溶质结构进行经典的MD模拟。这种新的方案使我们能够以机械方式对溶质分子进行量子采样,并经典地对许多溶剂结构进行采样。使用所选样本的激发能计算是通过广义多构型扰动理论进行的。我们成功地构建了吸收光谱,并实现了在极性溶剂中发现的吸收光谱的红移。为了了解C120在水中的运动,我们进行了主成分分析,发现甲基的运动贡献最大,而氨基的运动次之。通过将溶剂分解为两个成分,研究了溶剂对吸收光谱的影响:溶质分子变形的影响和溶剂分子的场效应。来自溶剂分子的溶剂效应对吸收光谱的峰的溶剂移位表现出很大的贡献,而来自溶质分子的溶剂效应没有表现出贡献。溶质分子的溶剂效应主要有助于吸收光谱的拓宽。在溶剂效应中,C-C键长度的变化对溶质分子吸收光谱的影响最大。对于溶剂对溶剂分子吸收光谱的影响,C120氨基周围的溶剂结构起关键作用。

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