Electrochemically modulated liquid-liquid extraction of ions

Alfonso Berduque, Amenda Sherburn, Mihaela Ghita, Robert A W Dryfe, Damien W M Arrigan

    Research output: Contribution to journalArticlepeer-review

    Abstract

    The development of ion extraction methods under electrochemical control via electrochemistry at the interface between two immiscible electrolyte solutions is discussed. A hydrodynamic flow injection system was used for the potentiostatic extraction of non-redox-active species from a flowing aqueous phase into a stationary organogel phase. The ions tetraethylammonium, 4-octylbenzenesulfonate (4-OBSĀ), and p-toluenesulfonate (p-TSĀ) were studied as model analytes. The extraction study comprised examination of the influence of extraction potentials, aqueous-phase flow rate, and target species concentration. The extraction process can be monitored in situ by means of the ion-transfer current, which has opposing signs for anions and cations. Hydrodynamic voltammograms were obtained from these experiments. The selective extraction of 4-OBSĀ, from its mixture with p-TSĀ, as well as coextraction of both anions is shown. The results demonstrate the utility of electrochemical modulation for the controlled extraction of ions from an aqueous phase into an organogel electrolyte phase. This offers potential benefits for various analytical processes including sample preparation and cleanup. © 2005 American Chemical Society.
    Original languageEnglish
    Pages (from-to)7310-7318
    Number of pages8
    JournalAnalytical Chemistry
    Volume77
    Issue number22
    DOIs
    Publication statusPublished - 15 Nov 2005

    Keywords

    • Anions
    • Cations (analytes
    • ion extn. methods under electrochem. control via electrochem. at interface between two immiscible electrolyte solns.)
    • Voltammetry (flow
    • Flow injection systems (hydrodynamic
    • Extraction (potentiostatic
    • ionic analyte electrochem modulated liq extn immiscible electrolyte soln

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