Molecular simulations of ionic liquids can provide deeper insight into the relationship between intermolecular interactions and macroscopic measurements for the solvents. However, many existing force fields have multiple shortcomings, including poor solvent dynamics, the underestimation of hydrogen-bonding strength, and errors in solvent interactions/organization. A new force field, called optimized potentials for liquid simulation-ionic-liquid virtual site (OPLS-VSIL), has been developed for imidazolium-based ionic liquids featuring a novel topology incorporating a virtual site bisecting the nitrogen atoms that offloads negative charge to inside the plane of the ring. Guided by free energy of hydration calculations, an empirically derived ...
Quantitative prediction of physical properties of room temperature ionic liquids through nonpolariza...
A new all-atom force field for the tris(pentafluoroethyl)trifluorophosphate ([FAP]−) anion was devel...
Most force field models for Room temperature ionic liquids cannot properly elucidate statics and dyn...
We develop ab initio force fields for alkylimidazolium-based ionic liquids (ILs) that predict the de...
In this work, a force field for molecular dynamics and Monte Carlo simulations of ionic liquids cont...
Classical molecular dynamics simulations are a valuable tool to study the mechanisms that dominate t...
In this work, the all-atom (AA) force fields were set up for three kinds of dual amino-functionalize...
International audienceWe introduce new coarse-grained models for two imidazolium-based ionic liquids...
Ionic liquids have been intensively studied during the last decade, but many questions still remain ...
Molecular simulations play an important role in establishing structure–property relations in complex...
We introduce new coarse-grained models for two imidazolium-based ionic liquids, namely, 1-butyl-3-me...
In this contribution, we present two new united-atom force fields (UA-FFs) for 1-alkyl-3-methylimida...
Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one ...
The TEAM force-field database is extended to cover room-temperature ionic liquids (IL). The training...
Rational understanding of interaction and structure of ionic liquids (ILs) is vital for their applic...
Quantitative prediction of physical properties of room temperature ionic liquids through nonpolariza...
A new all-atom force field for the tris(pentafluoroethyl)trifluorophosphate ([FAP]−) anion was devel...
Most force field models for Room temperature ionic liquids cannot properly elucidate statics and dyn...
We develop ab initio force fields for alkylimidazolium-based ionic liquids (ILs) that predict the de...
In this work, a force field for molecular dynamics and Monte Carlo simulations of ionic liquids cont...
Classical molecular dynamics simulations are a valuable tool to study the mechanisms that dominate t...
In this work, the all-atom (AA) force fields were set up for three kinds of dual amino-functionalize...
International audienceWe introduce new coarse-grained models for two imidazolium-based ionic liquids...
Ionic liquids have been intensively studied during the last decade, but many questions still remain ...
Molecular simulations play an important role in establishing structure–property relations in complex...
We introduce new coarse-grained models for two imidazolium-based ionic liquids, namely, 1-butyl-3-me...
In this contribution, we present two new united-atom force fields (UA-FFs) for 1-alkyl-3-methylimida...
Ionic liquids (ILs) have been widely used in separation, catalysis, electrochemistry, etc., and one ...
The TEAM force-field database is extended to cover room-temperature ionic liquids (IL). The training...
Rational understanding of interaction and structure of ionic liquids (ILs) is vital for their applic...
Quantitative prediction of physical properties of room temperature ionic liquids through nonpolariza...
A new all-atom force field for the tris(pentafluoroethyl)trifluorophosphate ([FAP]−) anion was devel...
Most force field models for Room temperature ionic liquids cannot properly elucidate statics and dyn...