首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Solvation Dynamics of C153 in Supercritical Fluoroform:A Simulation Study Based on Two-Site and Five-Site Models of the Solvent
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Solvation Dynamics of C153 in Supercritical Fluoroform:A Simulation Study Based on Two-Site and Five-Site Models of the Solvent

机译:超临界氟仿中C153的溶剂化动力学:基于两点和五点溶剂模型的模拟研究

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Molecular dynamics (MD) simulations of a probe solute (coumarin C153) in supercritical fluoroform are used to study time-dependent solute-sol vent interactions.We study the dynamics of solvent reorganization in response to electronic excitation of C153 at a temperature of 1.03 T_c (the critical temperature) and a series of densities above and below the critical density.Simulations of a two-site and five-site models of fluoroform are presented and compared.The time-dependent solvation response after solute electronic excitation is studied in the two cases,and the five-site results present an earlier onset of exponential decay that is closer to what is expected to be the experimental response.This is confirmed by comparison to experiment.In addition to obtaining the solvation response from nonequilibrium MD trajectories,approximate solvation responses were obtained from equilibrium time correlations of the fluctuations in the solvation energy change in the presence of ground- and excited-state solutes.For the five-site model,the equilibrium excited-state response shows stronger density dependence than the ground-state one.The nonequilibrium response appears to have an intermediate decay rate between the two equilibrium functions.The solute-partial-charge-solvent-induced-dipole interaction was also taken into account by means of a perturbative approach,which improved the agreement with experimental measurements available at densities corresponding to 1.4-1.6 rho_c (where rho_c the critical density).From the comparison between the two models,it is possible to conclude that an atomistic description is necessary for correctly representing the portion of solvation dynamics that is related to reorientation.This consideration is supported by providing results for orientational time correlation functions and by comparing the correlation times with the experimental ones.
机译:分子动力学(MD)模拟超临界氟仿中的溶质(香豆素C153)用于研究随时间变化的溶质-溶剂释放相互作用。我们研究了在1.03 T_c温度下响应C153电子激发的溶剂重组动力学。 (临界温度)以及高于和低于临界密度的一系列密度。提出并比较了氟仿的两点和五点模型。模拟研究了溶质电子激发后随时间变化的溶剂化反应在五个案例的结果中,五个位点的结果显示出较快的指数衰减,更接近于预期的实验响应。与实验相比,这一点得到了证实。除了从非平衡MD轨迹获得溶剂化响应外,还可以近似溶剂化响应是从存在地面和激发态时溶剂化能量变化波动的平衡时间相关性获得的态溶质。对于五点模型,平衡激发态响应显示出比基态更强的密度依赖性。非平衡响应似乎在两个平衡函数之间具有中间衰减率。还通过微扰方法考虑了溶剂诱导的偶极子相互作用,该方法改进了与在1.4-1.6 rho_c(其中rho_c为临界密度)对应的密度下可获得的实验测量值的一致性。通过两种模型的比较可以得出结论,原子描述是正确表示与重新取向有关的溶剂化动力学部分所必需的。通过提供取向时间相关函数的结果并将相关时间与实验时间进行比较,可以支持这种考虑。

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