Ionic liquids (ILs) promise far greater electrochemical performance compared to aqueous systems, yet key physicochemical properties governing their assembly at interfaces within commonly used graphitic nanopores remain poorly understood. In this work, we combine synchrotron X-ray scattering with first-principles molecular dynamics simulations to unravel key structural characteristics of 1-alkyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide ([TFSI]-) ionic liquids confined in carbon slit pores. X-ray scattering reveals selective pore filling due to size exclusion, while filled pores exhibit disruption in the IL intermolecular structure, the extent of which increases for narrower slit pores. First-principles simulations corroborate th...
International audienceWe use molecular simulations of an ionic liquid in contact with a range of nan...
International audiencePlanar electrochemical double-layer capacitors (supercapacitors) are strategic...
Classical molecular dynamics simulations were performed to study the structure and dynamics of the i...
Revealing the structure and behavior of confined ionic liquids (ILs) is essential for their applicat...
Ionic liquids are composed of equal quantities of positive and negative ions. In the bulk, electrica...
We apply molecular dynamic simulations to describe [C2mim+][Tf2N-] ionic liquids and its mixtures wi...
The molecular-scale properties of the room temperature ionic liquid (RTIL) 1-butyl-3-methylimidazoli...
Molecular dynamics simulations were used to study the structure and dynamics of the ionic liquid (IL...
Understanding the structural transition of ionic liquids (ILs) confined in a nanospace is imperative...
Room-temperature ionic liquids (ILs) are a unique, novel class of designer solvents and materials wi...
We use molecular simulations of an ionic liquid in contact with a range of nanoporous carbons to inv...
International audienceWe use molecular simulations of an ionic liquid in contact with a range of nan...
International audiencePlanar electrochemical double-layer capacitors (supercapacitors) are strategic...
Classical molecular dynamics simulations were performed to study the structure and dynamics of the i...
Revealing the structure and behavior of confined ionic liquids (ILs) is essential for their applicat...
Ionic liquids are composed of equal quantities of positive and negative ions. In the bulk, electrica...
We apply molecular dynamic simulations to describe [C2mim+][Tf2N-] ionic liquids and its mixtures wi...
The molecular-scale properties of the room temperature ionic liquid (RTIL) 1-butyl-3-methylimidazoli...
Molecular dynamics simulations were used to study the structure and dynamics of the ionic liquid (IL...
Understanding the structural transition of ionic liquids (ILs) confined in a nanospace is imperative...
Room-temperature ionic liquids (ILs) are a unique, novel class of designer solvents and materials wi...
We use molecular simulations of an ionic liquid in contact with a range of nanoporous carbons to inv...
International audienceWe use molecular simulations of an ionic liquid in contact with a range of nan...
International audiencePlanar electrochemical double-layer capacitors (supercapacitors) are strategic...
Classical molecular dynamics simulations were performed to study the structure and dynamics of the i...