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溶剂诱导的对硝基苯胺在水中的最低单重态π→π*电荷转移激发态的位移:TDDFT/EFP1 方法的应用。

Solvent-induced shift of the lowest singlet π → π* charge-transfer excited state of p-nitroaniline in water: an application of the TDDFT/EFP1 method.

机构信息

Department of Chemistry and Ames Laboratory, Iowa State University, Ames, Iowa 50011-3111, United States.

出版信息

J Phys Chem A. 2011 Sep 8;115(35):9801-9. doi: 10.1021/jp2045564. Epub 2011 Aug 11.

Abstract

The combined time-dependent density functional theory effective fragment potential method (TDDFT/EFP1) is applied to a study of the solvent-induced shift of the lowest singlet π → π* charge-transfer excited state of p-nitroaniline (pNA) from the gas to the condensed phase in water. Molecular dynamics simulations of pNA with 150 EFP1 water molecules are used to model the condensed-phase and generate a simulated spectrum of the lowest singlet charge-transfer excitation. The TDDFT/EFP1 method successfully reproduces the experimental condensed-phase π → π* vertical excitation energy and solvent-induced red shift of pNA in water. The largest contribution to the red shift comes from Coulomb interactions, between pNA and water, and solute relaxation. The solvent shift contributions reflect the increase in zwitterionic character of pNA upon solvation.

摘要

采用含时密度泛函理论有效原子实极化势方法(TDDFT/EFP1)研究了 p-硝基苯胺(pNA)从气相到水中的凝聚相时,最低单重态π→π电荷转移激发态的溶剂诱导位移。采用含 150 个 EFP1 水分子的 pNA 分子动力学模拟来模拟凝聚相并生成最低单重态电荷转移激发的模拟谱。TDDFT/EFP1 方法成功地再现了实验测定的 pNA 在水中的凝聚相π→π垂直激发能和溶剂诱导红移。红移的最大贡献来自于 pNA 与水之间的库仑相互作用和溶质弛豫。溶剂位移贡献反映了 pNA 溶剂化后两性离子特征的增加。

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