Structure and electronic properties of hydrated mesityl oxide: a sequential quantum mechanics/molecular mechanics approach


Autoria(s): Damasceno, Marcus Vinicius Araujo; Costa Cabral, Benedito J.; Coutinho, Kaline Rabelo
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

07/11/2013

07/11/2013

2012

Resumo

The hydration of mesityl oxide (MOx) was investigated through a sequential quantum mechanics/molecular mechanics approach. Emphasis was placed on the analysis of the role played by water in the MOx syn-anti equilibrium and the electronic absorption spectrum. Results for the structure of the MOx-water solution, free energy of solvation and polarization effects are also reported. Our main conclusion was that in gas-phase and in low-polarity solvents, the MOx exists dominantly in syn-form and in aqueous solution in anti-form. This conclusion was supported by Gibbs free energy calculations in gas phase and in-water by quantum mechanical calculations with polarizable continuum model and thermodynamic perturbation theory in Monte Carlo simulations using a polarized MOx model. The consideration of the in-water polarization of the MOx is very important to correctly describe the solute-solvent electrostatic interaction. Our best estimate for the shift of the pi-pi* transition energy of MOx, when it changes from gas-phase to water solvent, shows a red-shift of -2,520 +/- 90 cm(-1), which is only 110 cm(-1) (0.014 eV) below the experimental extrapolation of -2,410 +/- 90 cm(-1). This red-shift of around -2,500 cm(-1) can be divided in two distinct and opposite contributions. One contribution is related to the syn -> anti conformational change leading to a blue-shift of similar to 1,700 cm(-1). Other contribution is the solvent effect on the electronic structure of the MOx leading to a red-shift of around -4,200 cm(-1). Additionally, this red-shift caused by the solvent effect on the electronic structure can by composed by approximately 60 % due to the electrostatic bulk effect, 10 % due to the explicit inclusion of the hydrogen-bonded water molecules and 30 % due to the explicit inclusion of the nearest water molecules.

FCT (Portugal)

CNPq

CAPES

FAPESP

INCT-FCx

nBioNet (Brazil)

Identificador

THEORETICAL CHEMISTRY ACCOUNTS, NEW YORK, v. 131, n. 5, pp. 366-375, MAY, 2012

1432-881X

http://www.producao.usp.br/handle/BDPI/43105

10.1007/s00214-012-1214-y

http://dx.doi.org/10.1007/s00214-012-1214-y

Idioma(s)

eng

Publicador

SPRINGER

NEW YORK

Relação

THEORETICAL CHEMISTRY ACCOUNTS

Direitos

closedAccess

Copyright SPRINGER

Palavras-Chave #SOLVENT EFFECT #THEORETICAL CALCULATIONS #ABSORPTION ELECTRONIC SPECTRUM #FREE-ENERGIES #LIQUID WATER #SOLVENT #HYDROGEN #TRANSITION #CONTINUUM #DENSITY #APPROXIMATION #CONFIGURATION #COMPUTATION #CHEMISTRY, PHYSICAL
Tipo

article

original article

publishedVersion