We perform molecular dynamics simulations to study the structure and dynamics of the ionic liquid [Omim][TFSI] in a broad temperature range. A particular focus is the progressing nanoscale segregation into polar and nonpolar regions upon cooling. As this analysis requires simulations of large systems for long times, we use the iterative Boltzmann inversion method to develop a new coarse-grained (CG) model from a successful all-atom (AA) model.We show that the properties are similar for both levels of description at room temperature, while the CG model shows stronger nanoscale segregation and faster diffusion dynamics than its AA counterpart at low temperatures. Exploiting these features of the CG model, we find that the characterist...
A model to perform coarse grained molecular dynamics simulations of room temperature ionic liquids o...
We employ the Grand Canonical Adaptive Resolution Molecular Dynamics Technique (GC-AdResS) to test t...
© 2020 Author(s). Computer simulations can provide mechanistic insight into ionic liquids (ILs) and ...
We perform molecular dynamics simulations to study the structure and dynamics of the ionic liquid [...
A coarse-grained ionic liquid model has been developed to investigate the structure and dynamic prop...
Ionic liquids feature thermophysical properties that are of interest in solvents, energy storage mat...
Ionic liquids have many promising industrial applications. The side-chain length of the cations has ...
Room-temperature ionic liquids (RTILs) stand out among molecular liquids for their rich physicochemi...
Because of the sluggish dynamic and complex electrostatic potential networks of ionic liquids, estab...
This article contains data on structural characterization of the [C2Mim][NTf2] in bulk and in nano-c...
Computer simulations provide a unique insight into the microscopic details, molecular interactions a...
We use the Grand Canonical Adaptive Resolution Molecular Dynamics Technique (GC-AdResS) to examine ...
Electric fields modify the structural and dynamical properties of room temperature ionic liquids (RT...
Room-temperature ionic liquids (RTILs) are organic salts that are characterized by low melting point...
Because of the sluggish dynamic and complex electrostatic potential networks of ionic liquids, estab...
A model to perform coarse grained molecular dynamics simulations of room temperature ionic liquids o...
We employ the Grand Canonical Adaptive Resolution Molecular Dynamics Technique (GC-AdResS) to test t...
© 2020 Author(s). Computer simulations can provide mechanistic insight into ionic liquids (ILs) and ...
We perform molecular dynamics simulations to study the structure and dynamics of the ionic liquid [...
A coarse-grained ionic liquid model has been developed to investigate the structure and dynamic prop...
Ionic liquids feature thermophysical properties that are of interest in solvents, energy storage mat...
Ionic liquids have many promising industrial applications. The side-chain length of the cations has ...
Room-temperature ionic liquids (RTILs) stand out among molecular liquids for their rich physicochemi...
Because of the sluggish dynamic and complex electrostatic potential networks of ionic liquids, estab...
This article contains data on structural characterization of the [C2Mim][NTf2] in bulk and in nano-c...
Computer simulations provide a unique insight into the microscopic details, molecular interactions a...
We use the Grand Canonical Adaptive Resolution Molecular Dynamics Technique (GC-AdResS) to examine ...
Electric fields modify the structural and dynamical properties of room temperature ionic liquids (RT...
Room-temperature ionic liquids (RTILs) are organic salts that are characterized by low melting point...
Because of the sluggish dynamic and complex electrostatic potential networks of ionic liquids, estab...
A model to perform coarse grained molecular dynamics simulations of room temperature ionic liquids o...
We employ the Grand Canonical Adaptive Resolution Molecular Dynamics Technique (GC-AdResS) to test t...
© 2020 Author(s). Computer simulations can provide mechanistic insight into ionic liquids (ILs) and ...