4.7 Article

Cation-cation clusters in ionic liquids: Cooperative hydrogen bonding overcomes like-charge repulsion

Journal

SCIENTIFIC REPORTS
Volume 5, Issue -, Pages -

Publisher

NATURE RESEARCH
DOI: 10.1038/srep17505

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Funding

  1. DFG Priority Programme Control of London dispersion interaction in molecular chemistry [SPP 1807]
  2. DFG Collaborative Research Center Strong correlations and collective effects in radiation fields: Coulomb systems, clusters and particles [SFB 652]

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Direct spectroscopic evidence for H-bonding between like-charged ions is reported for the ionic liquid, 1-(2-hydroxyethyl)-3-methylimidazolium tetrafluoroborate. New infrared bands in the OH frequency range appear at low temperatures indicating the formation of H-bonded cation-cation clusters similar to those known for water and alcohols. Supported by DFT calculations, these vibrational bands can be assigned to attractive interaction between the hydroxyl groups of the cations. The repulsive Coulomb interaction is overcome by cooperative hydrogen bonding between ions of like charge. The transition energy from purely cation-anion interacting configurations to those including cation-cation H-bonds is determined to be 3-4 kJmol(-1). The experimental findings and DFT calculations strongly support the concept of anti-electrostatic hydrogen bonds (AEHBs) as recently suggested by Weinhold and Klein. The like-charge configurations are kinetically stabilized with decreasing temperatures.

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