Anti-electrostatic hydrogen bonding between anions of ionic liquids: A density functional theory study
Junwu Chen, Kun Dong, Lei Liu, Xiangping Zhang, Suojiang Zhang

TL;DR
This study uses density functional theory to demonstrate the existence of anti-electrostatic hydrogen bonds between anions in ionic liquids, revealing new insights into their complex intermolecular interactions.
Contribution
It provides the first DFT evidence for inter-anionic hydrogen bonds in ionic liquids, expanding the understanding of hydrogen bonding beyond traditional cation-anion interactions.
Findings
Inter-anionic HBs have similar stability to water dimers.
Cation-anion pairs are the most stable in ionic liquids.
Induction and dispersion interactions facilitate inter-anionic HBs.
Abstract
Hydrogen bonds (HBs) play a crucial role in the physicochemical properties of ionic liquids (ILs). At present, HBs between cations and anions (Ca-An) or between cations (Ca-Ca) in ILs have been reported extensively. Here, we provided DFT evidences for the exists of HBs between anions (An-An) in the IL 1-(2-hydroxyethyl)-3-methylimidazolium 4-(2-hydroxyethyl)imidazolide [HEMIm][HEIm]. The thermodynamics stabilities of anionic, cationic, and H2O dimers together with ionic pairs were studied by potential energy scans. The results show that the cation-anion pair is the most stable one, while the HB in anionic dimer possesses similar thermodynamics stability to the water dimer. The further geometric, spectral and electronic structure analyses demonstrate that the inter-anionic HB meets the general theoretical criteria of traditional HBs. The strength order of four HBs in complexes is…
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