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基于连续介质模型的界面分子取向与吸收光谱研究

A study on orientation and absorption spectrum of interfacial molecules by using continuum model.

作者信息

Ma Jian-Yi, Wang Jing-Bo, Li Xiang-Yuan, Huang Yao, Zhu Quan, Fu Ke-Xiang

机构信息

College of Chemical Engineering, Sichuan University, Chengdu 610065, People's Republic of China.

出版信息

J Comput Chem. 2008 Jan 30;29(2):198-210. doi: 10.1002/jcc.20773.

Abstract

In this work, a numerical procedure based on the continuum model is developed and applied to the solvation energy for ground state and the spectral shift against the position and the orientation of the interfacial molecule. The interface is described as a sharp boundary separating two bulk media. The polarizable continuum model (PCM) allows us to account for both electrostatic and nonelectrostatic solute-solvent interactions when we calculate the solvation energy. In this work we extend PCM to the interfacial system and the information about the position and orientation of the interfacial molecule can be obtained. Based on the developed expression of the electrostatic free energy of a nonequilibrium state, the numerical procedure has been implemented and used to deal with a series of test molecules. The time-dependent density functional theory (TDDFT) associated with PCM is used for the electron structure and the spectroscopy calculations of the test molecules in homogeneous solvents. With the charge distribution of the ground and excited states, the position- and orientation-dependencies of the solvation energy and the spectrum have been investigated for the interfacial systems, taking the electrostatic interaction, the cavitation energy, and the dispersion-repulsion interaction into account. The cavitation energy is paid particular attention, since the interface portion cut off by the occupation of the interfacial molecule contributes an extra part to the stabilization for the interfacial system. The embedding depth, the favorable orientational angle, and the spectral shift for the interfacial molecule have been investigated in detail. From the solvation energy calculations, an explanation has been given on why the interfacial molecule, even if symmetrical in structure, tends to take a tilting manner, rather than perpendicular to the interface.

摘要

在这项工作中,开发了一种基于连续介质模型的数值方法,并将其应用于基态的溶剂化能以及相对于界面分子位置和取向的光谱位移。界面被描述为分隔两种本体介质的尖锐边界。当我们计算溶剂化能时,可极化连续介质模型(PCM)使我们能够同时考虑静电和非静电溶质 - 溶剂相互作用。在这项工作中,我们将PCM扩展到界面系统,并可获得有关界面分子位置和取向的信息。基于所开发的非平衡态静电自由能表达式,已实现该数值方法并用于处理一系列测试分子。与PCM相关联的含时密度泛函理论(TDDFT)用于均匀溶剂中测试分子的电子结构和光谱计算。利用基态和激发态的电荷分布,考虑静电相互作用、空化能和色散 - 排斥相互作用,研究了界面系统中溶剂化能和光谱的位置及取向依赖性。特别关注空化能,因为被界面分子占据而截断的界面部分对界面系统的稳定性有额外贡献。已详细研究了界面分子的嵌入深度、有利取向角和光谱位移。从溶剂化能计算中,解释了为什么界面分子即使结构对称也倾向于倾斜排列,而不是垂直于界面。

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