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Enantiomerization of Axially Chiral Biphenyls: Polarizable MD Simulations in Water and Butylmethylether.

Veronika ZeindlhoferPhillip HudsonÁdám Márk PálvölgyiMatthias WelschMazin AlmarashiH Lee WoodcockBernard BrooksKatharina Bica-SchröderChristian Schröder
Published in: International journal of molecular sciences (2020)
In this study, we investigate the influence of chiral and achiral cations on the enantiomerization of biphenylic anions in n-butylmethylether and water. In addition to the impact of the cations and solvent molecules on the free energy profile of rotation, we also explore if chirality transfer between a chiral cation and the biphenylic anion is possible, i.e., if pairing with a chiral cation can energetically favour one conformer of the anion via diastereomeric complex formation. The quantum-mechanical calculations are accompanied by polarizable MD simulations using umbrella sampling to study the impact of solvents of different polarity in more detail. We also discuss how accurate polarizable force fields for biphenylic anions can be constructed from quantum-mechanical reference data.
Keyphrases
  • ionic liquid
  • molecular dynamics
  • molecular dynamics simulations
  • monte carlo
  • density functional theory
  • wastewater treatment
  • high resolution
  • capillary electrophoresis
  • artificial intelligence