We investigate the modification of gas phase ion polarizabilities upon solvation in polar solvents and ionic liquids. To this aim, we develop a classical electrostatic theory of charged liquids composed of solvent molecules modeled as finite size dipoles, and embedding polarizable ions that consist of Drude oscillators. In qualitative agreement with ab initio calculations of polar solvents and ionic liquids, the hydration energy of a polarizable ion in both types of dielectric liquid is shown to favor the expansion of its electronic cloud. Namely, the ion carrying no dipole moment in the gas phase acquires a dipole moment in the liquid environment, but its electron cloud also reaches an enhanced rigidity. We find that the overall effect is ...
Complex solvation phenomena, such as specific ion effects, occur in polar liquids. Interpretation of...
We investigate dielectric saturation and increment in polar liquids under external fields. We couple...
Polarizability is a key factor when it comes to an accurate description of different ionic systems. ...
We investigate the modification of gas phase ion polarizabilities upon solvation in polar solvents a...
Nonlocal electrostatic interactions associated with finite solvent size and ion polarizability are i...
According to dielectric spectroscopy measurements, ionic liquids (ILs) have rather modest dielectric...
© 2018 The Royal Society of Chemistry. Water dissolved in ionic liquids garners particular attention...
We present large scale polarizable simulations of mixtures of the ionic liquids 1-ethyl-3-methylimid...
Electronic charge delocalization on the molecular backbones of ionic liquid-forming ions substantial...
Organic electrolytes are unique in that their constituent solvents may be of much lower dielectric s...
Understanding polarization effects in condensed phases, like liquids and solutions, requires computa...
This work is focused on analyzing ion-pair interactions and showing the effect of solvent induced in...
This work reports for the first time the computational, frequency-dependent dielec. spectrum of the ...
While it is well known that molecules can be strongly polarized when transferred from the gas phase ...
The dielectric permittivity of salt water decreases on dissolving more salt. For nearly a century, t...
Complex solvation phenomena, such as specific ion effects, occur in polar liquids. Interpretation of...
We investigate dielectric saturation and increment in polar liquids under external fields. We couple...
Polarizability is a key factor when it comes to an accurate description of different ionic systems. ...
We investigate the modification of gas phase ion polarizabilities upon solvation in polar solvents a...
Nonlocal electrostatic interactions associated with finite solvent size and ion polarizability are i...
According to dielectric spectroscopy measurements, ionic liquids (ILs) have rather modest dielectric...
© 2018 The Royal Society of Chemistry. Water dissolved in ionic liquids garners particular attention...
We present large scale polarizable simulations of mixtures of the ionic liquids 1-ethyl-3-methylimid...
Electronic charge delocalization on the molecular backbones of ionic liquid-forming ions substantial...
Organic electrolytes are unique in that their constituent solvents may be of much lower dielectric s...
Understanding polarization effects in condensed phases, like liquids and solutions, requires computa...
This work is focused on analyzing ion-pair interactions and showing the effect of solvent induced in...
This work reports for the first time the computational, frequency-dependent dielec. spectrum of the ...
While it is well known that molecules can be strongly polarized when transferred from the gas phase ...
The dielectric permittivity of salt water decreases on dissolving more salt. For nearly a century, t...
Complex solvation phenomena, such as specific ion effects, occur in polar liquids. Interpretation of...
We investigate dielectric saturation and increment in polar liquids under external fields. We couple...
Polarizability is a key factor when it comes to an accurate description of different ionic systems. ...