We have studied the microscopic solvation structure of Co2+ in liquid water by means of density functional theory (DFT)-based Car−Parrinello molecular dynamics (CPMD) simulations and extended X-ray absorption fine structure (EXAFS) data analysis. The effect of the number of explicit water molecules in the simulation box on the first and second hydration shell structures has been considered. Classical molecular dynamics simulations, using an effective two-body potential for Co2+−water interactions, were also performed to show box size effects in a larger range. We have found that the number of explicit solvent molecules has a marginal role on the first solvation shell structural parameters, whereas larger boxes may be necessary to provide a better description of the second solvation shell. Car−Parrinello simulations were determined to provide a reliable description of structural and dynamical properties of Co2+ in liquid water. In particular, they seem to describe both the first and second hydration shells correctly. The EXAFS signal was reconstructed from Car−Parrinello simulations. Good agreement between the theoretical and experimental signals was observed, thus strengthening the microscopic picture of the Co2+ solvation properties obtained using first-principle simulations.

Spezia, R., Duvail, M., Vitorge, P., Cartailler, T., Tortajada, J., Chillemi, G., et al. (2006). A coupled Car-Parrinello molecular dynamics and EXAFS data analysis investigation of aqueous Co(2+). JOURNAL OF PHYSICAL CHEMISTRY. A, MOLECULES, SPECTROSCOPY, KINETICS, ENVIRONMENT, & GENERAL THEORY, 110, 13081-13088 [10.1021/jp064688z].

A coupled Car-Parrinello molecular dynamics and EXAFS data analysis investigation of aqueous Co(2+)

CHILLEMI G;
2006-01-01

Abstract

We have studied the microscopic solvation structure of Co2+ in liquid water by means of density functional theory (DFT)-based Car−Parrinello molecular dynamics (CPMD) simulations and extended X-ray absorption fine structure (EXAFS) data analysis. The effect of the number of explicit water molecules in the simulation box on the first and second hydration shell structures has been considered. Classical molecular dynamics simulations, using an effective two-body potential for Co2+−water interactions, were also performed to show box size effects in a larger range. We have found that the number of explicit solvent molecules has a marginal role on the first solvation shell structural parameters, whereas larger boxes may be necessary to provide a better description of the second solvation shell. Car−Parrinello simulations were determined to provide a reliable description of structural and dynamical properties of Co2+ in liquid water. In particular, they seem to describe both the first and second hydration shells correctly. The EXAFS signal was reconstructed from Car−Parrinello simulations. Good agreement between the theoretical and experimental signals was observed, thus strengthening the microscopic picture of the Co2+ solvation properties obtained using first-principle simulations.
2006
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore AGRI-09/A - Zootecnia generale e miglioramento genetico
English
Spezia, R., Duvail, M., Vitorge, P., Cartailler, T., Tortajada, J., Chillemi, G., et al. (2006). A coupled Car-Parrinello molecular dynamics and EXAFS data analysis investigation of aqueous Co(2+). JOURNAL OF PHYSICAL CHEMISTRY. A, MOLECULES, SPECTROSCOPY, KINETICS, ENVIRONMENT, & GENERAL THEORY, 110, 13081-13088 [10.1021/jp064688z].
Spezia, R; Duvail, M; Vitorge, P; Cartailler, T; Tortajada, J; Chillemi, G; D'Angelo, P; Gaigeot, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/397260
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