Publication | Open Access
Proton Transport in Imidazoles: Unraveling the Role of Supramolecular Structure
27
Citations
31
References
2015
Year
EngineeringBiochemistrySupramolecular StructureNatural SciencesSupramolecular HydrogenProton TransferHydrogen BondHydrogen-bonded LiquidProton-coupled Electron TransferPhysical ChemistryMolecular BiophysicsChemistryQuantum ChemistrySupramolecular ChemistryLevulinic AcidBiophysicsBiomolecular Engineering
The impact of supramolecular hydrogen bonded networks on dynamics and charge transport in 2-ethyl-4-methylimidazole (2E4MIm), a model proton-conducting system, is investigated by broadband dielectric spectroscopy, depolarized dynamic light scattering, viscometry, and calorimetry. It is observed that the slow, Debye-like relaxation reflecting the supramolecular structure in neat 2E4MIm is eliminated upon the addition of minute amounts of levulinic acid. This is attributed to the dissociation of imidazole molecules and the breaking down of hydrogen-bonded chains, which leads to a 10-fold enhancement of ionic conductivity.
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