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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Effects of Electronic-State-Dependent Solute Polarizability: Application to Solute-Pump/Solvent-Probe Spectra
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Effects of Electronic-State-Dependent Solute Polarizability: Application to Solute-Pump/Solvent-Probe Spectra

机译:电子状态相关溶质极化率的影响:在溶质泵/溶质探针光谱中的应用

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Experimental studies of solvation dynamics in liquids invariably ask how changing a solute from its electronic ground state to an electronically excited state affects a solutions dynamics. With traditional time-dependent-fluorescence experiments, that means looking for the dynamical consequences of the concomitant change in solute-solvent potential energy. But if one follows the shift in the dynamics through its effects on the macroscopic polarizability, as recent solute-pump/solvent-probe spectra do, there is another effect of the electronic excitation that should be considered: the jump in the solutes own polarizability. We examine the spectroscopic consequences of this solute polarizability change in the classic example of the solvation dye coumarin 153 dissolved in acetonitrile. After demonstrating that standard quantum chemical methods can be used to construct accurate multisite models for the polarizabilities of ground- and excited-state solvation dyes, we show via simulation that this polarizability change acts as a contrast agent, significantly enhancing the observable differences in optical-Kerr spectra between ground- and excited-state solutions. A comparison of our results with experimental solute-pump/solvent-probe spectra supports our interpretation and modeling of this spectroscopy. We predict, in particular, that solute-pump/solvent-probe spectra should be sensitive to changes in both the solvent dynamics near the solute and the electronic-state-dependence of the solutes own rotational dynamics.
机译:液体中溶剂化动力学的实验研究总是询问,溶质从其电子基态到电子激发态的变化如何影响溶液动力学。使用传统的随时间变化的荧光实验,这意味着寻找溶质溶剂势能随之变化的动力学后果。但是,如果像最近的溶质泵/溶剂探针光谱那样,通过动力学对宏观极化率的影响来跟踪动力学的变化,则应该考虑电子激发的另一种影响:溶质的跃迁具有极化性。我们在溶解于乙腈中的溶剂化染料香豆素153的经典实例中研究了这种溶质极化率变化的光谱学后果。在证明标准量子化学方法可用于为基态和激发态溶剂化染料的极化率构建精确的多位点模型后,我们通过仿真表明,这种极化率变化可作为造影剂,从而显着增强了光学-基态和激发态溶液之间的克尔光谱。将我们的结果与实验溶质泵/溶剂探针光谱进行比较,可以支持我们对该光谱的解释和建模。我们特别预测,溶质泵/溶剂探针光谱应该对溶质附近的溶剂动力学变化以及溶质自身的旋转动力学的电子状态依赖性敏感。

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