A new systematic all-atom force field was developed for cyclic guanidinium-based ionic liquids (ILs) based on the AMBER force field. Optimized molecular geometries and equilibrium bond lengths and angles were obtained by ab initio calculations, and charges were allocated to each atom center by fitting the ab initio electrostatic potential. Molecular dynamics simulations were performed for eleven kinds of ILs that are comprised of NO3- anions and cyclic guanidinium-based cations. Validation was carried out by comparing our simulated densities with experimental and calculated data from the literature. Transport properties such as self-diffusion coefficients, viscosities, and conductivities were calculated by molecular dynamic simulation, and ...
The phase behaviour and dynamics of molecular ionic liquids are studied using primitive models and e...
Reliable force field (FF) is a central issue in successful prediction of physical chemical propertie...
Because of the sluggish dynamic and complex electrostatic potential networks of ionic liquids, estab...
A new systematic all-atom force field was developed for cyclic guanidinium-based ionic liquids (ILs)...
Molecular dynamics simulations were performed based on the all-atom (AA) force fields for three kind...
An all-atom force field was proposed for a new class of room temperature ionic liquids (RTILs), N,N,...
Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one ...
Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one ...
In this work, the all-atom (AA) force fields were set up for three kinds of dual amino-functionalize...
We develop ab initio force fields for alkylimidazolium-based ionic liquids (ILs) that predict the de...
Molecular dynamics simulations are often used to study the structures and dynamics of ionic liquids....
International audienceIonic liquids—which are special solvents composed entirely of ions—are difficu...
Classical molecular dynamics simulations are a valuable tool to study the mechanisms that dominate t...
Compared with imidazolium-based ionic liquids (ILs), phosphonium-based ILs have been proven to be mo...
This work summarizes some results obtained through equilibrium molecular dynamic simulations regardi...
The phase behaviour and dynamics of molecular ionic liquids are studied using primitive models and e...
Reliable force field (FF) is a central issue in successful prediction of physical chemical propertie...
Because of the sluggish dynamic and complex electrostatic potential networks of ionic liquids, estab...
A new systematic all-atom force field was developed for cyclic guanidinium-based ionic liquids (ILs)...
Molecular dynamics simulations were performed based on the all-atom (AA) force fields for three kind...
An all-atom force field was proposed for a new class of room temperature ionic liquids (RTILs), N,N,...
Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one ...
Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one ...
In this work, the all-atom (AA) force fields were set up for three kinds of dual amino-functionalize...
We develop ab initio force fields for alkylimidazolium-based ionic liquids (ILs) that predict the de...
Molecular dynamics simulations are often used to study the structures and dynamics of ionic liquids....
International audienceIonic liquids—which are special solvents composed entirely of ions—are difficu...
Classical molecular dynamics simulations are a valuable tool to study the mechanisms that dominate t...
Compared with imidazolium-based ionic liquids (ILs), phosphonium-based ILs have been proven to be mo...
This work summarizes some results obtained through equilibrium molecular dynamic simulations regardi...
The phase behaviour and dynamics of molecular ionic liquids are studied using primitive models and e...
Reliable force field (FF) is a central issue in successful prediction of physical chemical propertie...
Because of the sluggish dynamic and complex electrostatic potential networks of ionic liquids, estab...