Wepresent a computational and theoretical study of themicroscopic structure of tworepresentative ionic liquids as probed by using xenon. Trajectories obtained from classical molecular dynamics simulations of xenon dissolved in [bmim][Cl] and [bmim][PF6] have been used to define the cage of xenon following a theoreticalmodeling introduced some years ago for simple fluids. The separate contribution of cations and anions to the caging of xenon has been disentangled, showing amajor contribution fromthe cations.Moreover the coupled dynamics of the probe and the associated cage have been analyzed. The distribution of librational frequencies for the putative motion of the probe within the cage of the two systems shows clear, though not large, differences. The diffusion coefficients of cations, anions and xenon support the validity of hydrodynamic theory.

MD simulation of xenon in ionic liquids: disentangling the cationic and anionic cage effects on the structural and dynamic properties

FREZZATO, DIEGO;BAGNO, ALESSANDRO;SAIELLI, GIACOMO
2015

Abstract

Wepresent a computational and theoretical study of themicroscopic structure of tworepresentative ionic liquids as probed by using xenon. Trajectories obtained from classical molecular dynamics simulations of xenon dissolved in [bmim][Cl] and [bmim][PF6] have been used to define the cage of xenon following a theoreticalmodeling introduced some years ago for simple fluids. The separate contribution of cations and anions to the caging of xenon has been disentangled, showing amajor contribution fromthe cations.Moreover the coupled dynamics of the probe and the associated cage have been analyzed. The distribution of librational frequencies for the putative motion of the probe within the cage of the two systems shows clear, though not large, differences. The diffusion coefficients of cations, anions and xenon support the validity of hydrodynamic theory.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/3187071
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