4.6 Article

Competitive pi interactions and hydrogen bonding within imidazolium ionic liquids

Journal

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volume 16, Issue 7, Pages 3238-3253

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c3cp54672a

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Funding

  1. ERC Advanced Investigator Grant

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In this paper we have explored the structural and energetic landscape of potential pi(+)-pi(+) stacked motifs, hydrogen-bonding arrangements and anion-pi(+) interactions for gas-phase ion pair (IP) conformers and IP-dimers of 1,3-dimethylimidazolium chloride, [C(1)C(1)im]Cl. We classify cation-cation ring stacking as an electron deficient pi(+)-pi(+) interaction, and a competitive anion on-top IP motif as an anion-donor pi(+)-acceptor interaction. 21 stable IP-dimers have been obtained within an energy range of 0-126 kJ mol(-1). The structures have been found to exhibit a complex interplay of structural features. We have found that low energy IP-dimers are not necessarily formed from the lowest energy IP conformers. The sampled range of IP-dimers exhibits new structural forms that cannot be recovered by examining the ion-pairs alone, moreover the IP-dimers are recovering additional key features of the local liquid structure. Including dispersion is shown to impact both the relative energy ordering and the geometry of the IPs and IP-dimers, however the impact is found to be subtle and dependent on the underlying functional.

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