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首页> 外文期刊>International Journal of Quantum Chemistry >Fluorescence and phosphorescence of acetone in neat liquid and aqueous solution studied by QM/MM and PCM approaches
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Fluorescence and phosphorescence of acetone in neat liquid and aqueous solution studied by QM/MM and PCM approaches

机译:用QM / MM和PCM方法研究纯净液体和水溶液中丙酮的荧光和磷光

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摘要

Electronic singlet and triplet nπ* absorption and emission energies of acetone in vacuum, neat liquid and aqueous solution have been calculated. Electronic states of acetone in solution have been modelled using combined molecular dynamics-quantum mechanics/molecular mechanics techniques and the polarizable continuum model. In addition, we have compared density functional theory based results to corresponding coupled cluster singles and doubles predictions. Theoretical results have also been compared to experimental data. In general, we have obtained a good description of solvent effects on the absorption energies. However, modelling of excited states explicitly is still a challenge for the applied approaches, as the solvent shifts of the singlet nπ* emission have been considerably underestimated and also the solvent shift related to the Stokes shifts of fluorescence was predicted to have incorrect sign compared to available experimental data.
机译:计算了真空,纯净液体和水溶液中丙酮的电子单重态和三重态nπ*的吸收和发射能。溶液中丙酮的电子状态已使用组合的分子动力学-量子力学/分子力学技术和可极化连续体模型进行了建模。此外,我们将基于密度泛函理论的结果与相应的耦合簇单双预测进行了比较。理论结果也已与实验数据进行了比较。通常,我们已经很好地描述了溶剂对吸收能的影响。但是,对于激发态的建模仍然是应用方法面临的挑战,因为单线态nπ*发射的溶剂位移被大大低估了,并且与荧光的斯托克斯位移相关的溶剂位移也被预测为不正确。现有的实验数据。

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