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乙腈中的溶剂化动力学:一项纳入溶质电子响应和核弛豫的研究。

Solvation dynamics in acetonitrile: a study incorporating solute electronic response and nuclear relaxation.

作者信息

Ingrosso Francesca, Ladanyi Branka M, Mennucci Benedetta, Elola M Dolores, Tomasi Jacopo

机构信息

Dipartimento di Chimica e Chimica Industriale, Università di Pisa, Via Risorgimento 35, 56126 Pisa, Italy.

出版信息

J Phys Chem B. 2005 Mar 3;109(8):3553-64. doi: 10.1021/jp0456032.

Abstract

The solvent reorganization process after electronic excitation of a polar solute in a polar solvent such as acetonitrile is related mainly to the time evolution of the solute-solvent electrostatic interaction. Modern laser-based techniques have sufficient time resolution to follow this decay in real time, providing information to be confirmed and interpreted by theories and models. We present here a study aimed at the investigation of the different steps involved in the process taking place after a vertical S(0) --> S(1) excitation of a large size chromophore, coumarin 153 (C153), in acetonitrile, from both the solute and the solvent points of view. To do this, we use accurate quantum mechanical calculations for the solute properties within the polarizable continuum model (PCM) and classical molecular dynamics (MD) simulations, both equilibrium and nonequilibrium, for C153 in the presence of the solvent. The geometry of the solute is allowed to change in order to study the role of internal motions in the time-dependent solvation process. The solvent response function has been obtained from the simulation data and compared to experiment, while the comparison between equilibrium and nonequilibrium MD results for the solvation response confirms the validity of the linear response approximation in the C153-acetonitrile system. The MD trajectories have also been used to monitor the structure of the solvation shell and to determine its change in response to the change in the solute partial charges.

摘要

在诸如乙腈等极性溶剂中,极性溶质发生电子激发后的溶剂重组过程主要与溶质 - 溶剂静电相互作用的时间演化有关。基于现代激光的技术具有足够的时间分辨率来实时跟踪这种衰减,从而提供有待理论和模型进行证实与解释的信息。我们在此展示一项研究,旨在从溶质和溶剂两个角度,研究大尺寸发色团香豆素153(C153)在乙腈中发生垂直S(0)→S(1)激发后该过程所涉及的不同步骤。为此,我们针对在溶剂存在下的C153,在可极化连续介质模型(PCM)内对溶质性质进行精确的量子力学计算,并进行经典分子动力学(MD)模拟,包括平衡态和非平衡态模拟。允许溶质的几何结构发生变化,以研究内部运动在随时间变化的溶剂化过程中的作用。从模拟数据中获得了溶剂响应函数并与实验进行了比较,而溶剂化响应的平衡态和非平衡态MD结果之间的比较证实了C153 - 乙腈体系中线性响应近似的有效性。MD轨迹还被用于监测溶剂化壳层的结构,并确定其响应溶质部分电荷变化的情况。

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