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Nanoscale domains in ionic liquids: A statistical mechanics definition for molecular dynamics studies.

B Shadrack JabesLuigi Delle Site
Published in: The Journal of chemical physics (2018)
One of the many open questions concerning Ionic Liquids (ILs) is the existence of nanoscale supra-molecular domains which characterize the bulk. The hypothesis of their existence does not meet a general consensus since their definition seems to be based on ad hoc arbitrary criteria rather than on general and solid first principles of physics. In this work, we propose a suitable definition of supra-molecular domains based on first principles of statistical mechanics. Such principles can be realized through the application of a recently developed computational tool which employs adaptive molecular resolution. The method can identify the smallest region of a liquid for which the atomistic details are strictly required, while the exterior plays the role of a generic structureless thermodynamic reservoir. We consider four different imidazolium-based ILs and show that indeed one can quantitatively represent the liquid as a collection of atomistically self-contained nanodroplets embedded in a generic thermodynamic bath. Such nanodroplets express a characteristic length scale for heterogeneity in ILs.
Keyphrases
  • ionic liquid
  • molecular dynamics
  • room temperature
  • single molecule
  • density functional theory
  • molecular dynamics simulations
  • single cell
  • high resolution