Wavefunction quantization of the proton motion in a H5O2+ dimer solvated in liquid water

Citation
R. Vuilleumier et D. Borgis, Wavefunction quantization of the proton motion in a H5O2+ dimer solvated in liquid water, J MOL STRUC, 552, 2000, pp. 117-136
Citations number
71
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF MOLECULAR STRUCTURE
ISSN journal
00222860 → ACNP
Volume
552
Year of publication
2000
Pages
117 - 136
Database
ISI
SICI code
0022-2860(20000926)552:<117:WQOTPM>2.0.ZU;2-W
Abstract
The infrared spectroscopy of the transient H5O2+ species in liquid water is studied. The potential energy surface of the system is modeled by a two-st ate Empirical Valence Bond (EVB) model. The quantization of the central pro ton of the dimer H5O2+ is described by a three-dimensional time-dependent g aussian wavefunction within an adiabatic molecular dynamics simulation, or by using an effective parameterization of the EVE model, using a preliminar y path-integral calculation. It is shown that the H5O2+ complex in solution displays a strong absorption between 1000 and 2000 cm(-1). We demonstrate that the contribution of the asymmetric O-H+ stretch cannot be unambiguousl y assigned, due to its close coupling to the other modes of the dimer. The oxygen-oxygen stretching mode of the dimer strongly modulates the infrared spectrum of the central proton while the effect of the solvent is mainly to induce an asymmetry of the central O-H-O+ bond of H5O2+ leading, partly, t o absorption at higher frequencies. (C) 2000 Elsevier Science B.V. All righ ts reserved.