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一系列香豆素染料振动光谱中溶剂展宽的建模。从隐式到显式溶剂模型。

Modeling Solvent Broadening on the Vibronic Spectra of a Series of Coumarin Dyes. From Implicit to Explicit Solvent Models.

作者信息

Cerezo Javier, Avila Ferrer Francisco J, Prampolini Giacomo, Santoro Fabrizio

机构信息

Istituto di Chimica dei Composti OrganoMetallici, Consiglio Nazionale delle Richerche (ICCOM-CNR), Area della Ricerca, via G. Moruzzi 1, I-56124 Pisa, Italy.

Physical Chemistry, Faculty of Science, University of Málaga , Málaga 29071, Spain.

出版信息

J Chem Theory Comput. 2015 Dec 8;11(12):5810-25. doi: 10.1021/acs.jctc.5b00870. Epub 2015 Nov 24.

Abstract

We present a protocol to estimate the solvent-induced broadening of electronic spectra based on a model that explicitly takes into account the environment embedding the solute. Starting from a classical approximation of the solvent contribution to the spectrum, the broadening arises from the spread of the excitation energies due to the fluctuation of the solvent coordinates, and it is represented as a Gaussian line shape that convolutes the vibronic spectrum of the solute. The latter is computed in harmonic approximation at room temperature with a time-dependent approach. The proposed protocol for the computation of spectral broadening exploits molecular dynamics (MD) simulations performed on the solute-solvent system, keeping the solute degrees of freedom frozen, followed by the computation of the excitation properties with a quantum mechanics/molecular mechanics (QM/MM) approach. The factors that might influence each step of the protocol are analyzed in detail, including the selection of the empirical force field (FF) adopted in the MD simulations and the QM/MM partition of the system to compute the excitation energies. The procedure is applied to a family of coumarin dyes, and the results are compared with experiments and with the predictions of a very recent work (Cerezo et al., Phys. Chem. Chem. Phys. 2015, 17, 11401-11411), where an implicit model was adopted for the solvent. The final spectra of the considered coumarins were obtained without including ad hoc phenomenological parameters and indicate that the broadenings computed with explicit and implicit models both follow the experimental trend, increasing as the polarity change from the initial to the final state increases. More in detail, the implicit model provides larger estimations of the broadening that are closer to the experimental evidence, while explicit models appear to better capture relative differences arising from different solvents or different solutes. Possible inaccuracies of the adopted FF that may lead to the observed underestimation are analyzed in detail.

摘要

我们提出了一种基于明确考虑溶质所处环境的模型来估算溶剂诱导电子光谱展宽的方案。从溶剂对光谱贡献的经典近似出发,展宽源于溶剂坐标波动导致的激发能展宽,它被表示为卷积溶质振动光谱的高斯线形。后者在室温下采用含时方法在简谐近似下计算。所提出的光谱展宽计算方案利用了在溶质 - 溶剂体系上进行的分子动力学(MD)模拟,保持溶质自由度固定,随后采用量子力学/分子力学(QM/MM)方法计算激发性质。详细分析了可能影响该方案每一步的因素,包括MD模拟中采用的经验力场(FF)的选择以及用于计算激发能的体系的QM/MM划分。该程序应用于一系列香豆素染料,并将结果与实验以及最近一项工作(Cerezo等人,《物理化学化学物理》2015年,17卷,11401 - 11411页)的预测进行比较,该工作中对溶剂采用了隐式模型。所考虑的香豆素的最终光谱在不包含特设现象学参数的情况下获得,结果表明用显式和隐式模型计算的展宽均遵循实验趋势,随着从初始态到终态极性变化的增加而增大。更详细地说,隐式模型提供的展宽估计值更大,更接近实验证据,而显式模型似乎能更好地捕捉不同溶剂或不同溶质产生的相对差异。详细分析了所采用的FF可能导致观察到的低估的可能不准确之处。

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