We explore the influence of ion pairing in room temperature ionic liquids confined by planar electrode surfaces. Using a coarse-grained model for the aromatic ionic liquid [C4MIM(+)][BF4 (-)], we account for an ion pairing component as an equilibrium associating species within a classical density functional theory. We investigated the resulting structure of the electrical double layer as well as the ensuing surface forces and differential capacitance, as a function of the degree of ion association. We found that the short-range structure adjacent to surfaces was remarkably unaffected by the degree of ion pairing, up to several molecular diameters. This was even the case for 100% of ions being paired. The physical implications of ion pairing...
Applications of ionic liquids at electrified interfaces to energy-storage systems, electrowetting de...
Ionic liquids are organic salts that are in liquid phase at room temperature. Their wide liquidus ra...
We have studied structural transitions in the electrical double layer of ionic liquids by molecular ...
Theoretical modelling provides a powerful tool to study room temperature ionic liquids as a promisin...
We have implemented a generic coarse-grained model for the aromatic ionic liquid [CnMIM+][Tf2N-]. Va...
In order to understand basic principles of the double layer formation in room temperature ionic liqu...
Ion association, leading to the formation of clusters in ionic liquids, is investigated within the f...
We report on the molecular dynamics simulations of the electrical double layers (EDLs) at the interf...
We study the effects of ion size asymmetry and short-range correlations on the electrical double lay...
© 2020 American Physical Society. Ions in ionic liquids and concentrated electrolytes reside in a cr...
A new three-parameter (valency, ion size, and charge asymmetry) model, the asymmetric restricted pri...
The electrical double-layer structure and capacitance in room temperature ionic liquids at electrifi...
We used a recently developed classical Density Functional Theory (DFT) method to study the structure...
A new three-parameter (valency, ion size, and charge asymmetry) model, the asymmetric restricted pri...
We used a recently developed classical Density Functional Theory (DFT) method to study the structure...
Applications of ionic liquids at electrified interfaces to energy-storage systems, electrowetting de...
Ionic liquids are organic salts that are in liquid phase at room temperature. Their wide liquidus ra...
We have studied structural transitions in the electrical double layer of ionic liquids by molecular ...
Theoretical modelling provides a powerful tool to study room temperature ionic liquids as a promisin...
We have implemented a generic coarse-grained model for the aromatic ionic liquid [CnMIM+][Tf2N-]. Va...
In order to understand basic principles of the double layer formation in room temperature ionic liqu...
Ion association, leading to the formation of clusters in ionic liquids, is investigated within the f...
We report on the molecular dynamics simulations of the electrical double layers (EDLs) at the interf...
We study the effects of ion size asymmetry and short-range correlations on the electrical double lay...
© 2020 American Physical Society. Ions in ionic liquids and concentrated electrolytes reside in a cr...
A new three-parameter (valency, ion size, and charge asymmetry) model, the asymmetric restricted pri...
The electrical double-layer structure and capacitance in room temperature ionic liquids at electrifi...
We used a recently developed classical Density Functional Theory (DFT) method to study the structure...
A new three-parameter (valency, ion size, and charge asymmetry) model, the asymmetric restricted pri...
We used a recently developed classical Density Functional Theory (DFT) method to study the structure...
Applications of ionic liquids at electrified interfaces to energy-storage systems, electrowetting de...
Ionic liquids are organic salts that are in liquid phase at room temperature. Their wide liquidus ra...
We have studied structural transitions in the electrical double layer of ionic liquids by molecular ...