Hydration and ion association of aqueous choline chloride and chlorocholine chloride

The choline ion (Ch + ) is ubiquitous in nature and also its synthetic homologue, chlorocholine (ClCh + ), is widely used. Nevertheless, surprisingly little information on the hydration and counter-ion binding of these cations can be found in the literature. In this contribution we report effective...

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Published inPhysical chemistry chemical physics : PCCP Vol. 21; no. 21; pp. 197 - 198
Main Authors Shaukat, Saadia, Fedotova, Marina V, Kruchinin, Sergey E, Bešter-Roga, Marija, Podlipnik, rtomir, Buchner, Richard
Format Journal Article
LanguageEnglish
Published England 07.06.2019
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Summary:The choline ion (Ch + ) is ubiquitous in nature and also its synthetic homologue, chlorocholine (ClCh + ), is widely used. Nevertheless, surprisingly little information on the hydration and counter-ion binding of these cations can be found in the literature. In this contribution we report effective hydration numbers, determined by dielectric relaxation spectroscopy, and ion-pair association constants with Cl − , determined by dilute-solution conductivity measurements. In combination with RISM calculations the obtained data suggest that for Ch + water is bound to the hydroxy group via hydrogen bonds whereas for ClCh + a rather stiff clathrate-like shell around the chlorine atom seems to be formed. With Cl − both cations form contact ion pairs with association constants of only ∼2 to 3 M −1 . Choline hydration occurs predominantly via its hydroxyl group, and weak contact ion pair formation with Cl − is via the onium moiety.
Bibliography:Electronic supplementary information (ESI) available: Tables with data for density, conductivity, and dielectric relaxation parameters of the investigated samples, as well as additional figures illustrating data processing and obtained results. See DOI
10.1039/c9cp01016e
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ISSN:1463-9076
1463-9084
DOI:10.1039/c9cp01016e