One of the few properties common to all ionic liquids is their inherent electrical conductivity, which makes them promising candidates for advanced electrochemical applications. A central finding in this respect is that the measured conductivity is almost always lower than the one obtained from the Nernst–Einstein relation. There has been much dispute about whether correlated motion, charge transfer, or some sort of aggregation is the reason for this difference. In this work, we apply density functional theory-based descriptors to estimate the charge transfer in ionic liquids, which allow predictions for a large number of systems with minimal effort. The theoretical charge transfer was obtained from vertical ionization potentials and electr...
We develop the theory of the electrical double layer in ionic liquids as proposed earlier by Kornysh...
Room-temperature ionic liquids represent a novel and intriguing class of materials, but little is un...
An improved density functional theory (DFT) for an inhomogeneous charged system (including electroly...
One of the few properties common to all ionic liquids is their inherent electrical conductivity, whi...
As a result of continuing ionic liquid research, it becomes clearer that charge transfer in ionic li...
A very great deal of the experimental work on room-temperature ionic liquids was done after high-per...
We present a simple, classical density functional approach to the study of simple models of room tem...
The charging kinetics of electric double layers (EDLs) has a pivotal role in the performance of a wi...
A new three-parameter (valency, ion size, and charge asymmetry) model, the asymmetric restricted pri...
Ionic liquids are liquids comprised totally of ions. However, not all of the ions present appear to ...
Nowadays, density functional theory (DFT)-based high-throughput computational approach is becoming m...
A new classical density functional approach is developed to accurately treat a coarse-grained model ...
We used a recently developed classical Density Functional Theory (DFT) method to study the structure...
Theoretical modelling provides a powerful tool to study room temperature ionic liquids as a promisin...
The solvation of lithium salts in ionic liquids (ILs) leads to the creation of a lithium ion carryin...
We develop the theory of the electrical double layer in ionic liquids as proposed earlier by Kornysh...
Room-temperature ionic liquids represent a novel and intriguing class of materials, but little is un...
An improved density functional theory (DFT) for an inhomogeneous charged system (including electroly...
One of the few properties common to all ionic liquids is their inherent electrical conductivity, whi...
As a result of continuing ionic liquid research, it becomes clearer that charge transfer in ionic li...
A very great deal of the experimental work on room-temperature ionic liquids was done after high-per...
We present a simple, classical density functional approach to the study of simple models of room tem...
The charging kinetics of electric double layers (EDLs) has a pivotal role in the performance of a wi...
A new three-parameter (valency, ion size, and charge asymmetry) model, the asymmetric restricted pri...
Ionic liquids are liquids comprised totally of ions. However, not all of the ions present appear to ...
Nowadays, density functional theory (DFT)-based high-throughput computational approach is becoming m...
A new classical density functional approach is developed to accurately treat a coarse-grained model ...
We used a recently developed classical Density Functional Theory (DFT) method to study the structure...
Theoretical modelling provides a powerful tool to study room temperature ionic liquids as a promisin...
The solvation of lithium salts in ionic liquids (ILs) leads to the creation of a lithium ion carryin...
We develop the theory of the electrical double layer in ionic liquids as proposed earlier by Kornysh...
Room-temperature ionic liquids represent a novel and intriguing class of materials, but little is un...
An improved density functional theory (DFT) for an inhomogeneous charged system (including electroly...