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Cluster Formation through Hydrogen Bond Bridges across Chloride Anions in a Hydroxyl-Functionalized Ionic Liquid.

Sumit Kumar PanjaBoumediene HaddadMansour DebdabJohannes KieferYassine ChakerSerge BressonAnnalisa Paolone
Published in: Chemphyschem : a European journal of chemical physics and physical chemistry (2019)
Several recent studies of hydroxyl-functionalized ionic liquids (ILs) have shown that cation-cation interactions can be dominating these materials at the molecular level when the anion involved is weakly interacting. The hydrogen bonds between the like ions led to the formation of interesting chain-like, ring-like, or distinct dimeric (i. e. two ion pairs) supermolecular clusters. In the present work, vibrational spectroscopy (ATR-IR and Raman) and density functional theory (DFT) calculations of the hydroxyl-functionalized imidazolium ionic liquid C2 OHmimCl indicate that anion-cation hydrogen bonding interactions are dominating, leading to the formation of distinct dimeric ion pair clusters. In this arrangement, the Cl- anions function as a bridge between the cations by establishing bifurcated hydrogen bonds with the OH group of one cation and the C(2)-H of another cation. Cation-cation interactions, on the other hand, do not play a significant role in the observed clusters.
Keyphrases
  • ionic liquid
  • density functional theory
  • room temperature
  • molecular dynamics
  • quantum dots
  • molecular dynamics simulations
  • high resolution
  • dna damage
  • molecularly imprinted
  • aqueous solution
  • visible light