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DFT and TD‐DFT investigation of IR and UV spectra of solvated molecules: Comparison of two SCRF continuum models
Authors:Julien Preat  Pierre‐François Loos  Xavier Assfeld  Denis Jacquemin  Eric A. Perpète
Affiliation:1. Laboratoire de Chimie Théorique Appliquée, Facultés Universitaires Notre‐Dame de la Paix, Rue de Bruxelles, 61, 5000 Namur, BelgiumLaboratoire de Chimie Théorique Appliquée, Facultés Universitaires Notre‐Dame de la Paix, Rue de Bruxelles, 61, 5000 Namur, Belgium;2. Equipe de Chimie et Biochimie Théoriques, UMR CNRS‐UHP 7565, Université Henri Poincaré Nancy 1‐BP 239, 54506 Vandoeuvre‐lès‐Nancy Cedex‐France;3. Laboratoire de Chimie Théorique Appliquée, Facultés Universitaires Notre‐Dame de la Paix, Rue de Bruxelles, 61, 5000 Namur, Belgium
Abstract:We report the calculation of liquid‐phase infrared (IR) and ultraviolet (UV) spectra in the framework of the solute's response to the reaction field of several solvents. In particular, we compare these two properties for the multipolar expansion model developed in the Nancy continuum model (NCM) and the polarized continuum model (PCM) scheme developed in Pise and Naples. All calculations are carried out at the (TD‐)DFT/6–311G(2d,2p) level of theory. The cavity size used for modeling the solute effects on the IR and UV spectra are examined. To calibrate the solute cavity size, we have investigated the IR spectra of coumarin and of a set of 14 additional solutes of different size and polarity in several dielectrical surroundings. It turns out that: (i) PCM and NCM present an identical behavior when a common cavity is used to calibrate the models; and (ii) for both NCM and PCM models, the IR spectra are highly sensitive to the solute and solvent polarity. The UV/VIS investigation of coumarin derivatives demonstrates that both models provide close estimates of λmax independent of the solute cavity size. © 2006 Wiley Periodicals, Inc. Int J Quantum Chem, 2007
Keywords:coumarin  density functional theory  IR spectra  electronic spectra  solvent effects  PCM  NCM  SCRF
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