Curtin University Homepage
  • Library
  • Help
    • Admin

    espace - Curtin’s institutional repository

    JavaScript is disabled for your browser. Some features of this site may not work without it.
    View Item 
    • espace Home
    • espace
    • Curtin Research Publications
    • View Item
    • espace Home
    • espace
    • Curtin Research Publications
    • View Item

    Ferrocene Bound Poly(vinyl chloride) as Ion to Electron Transducer in Electrochemical Ion Sensors

    Access Status
    Fulltext not available
    Authors
    Pawlak, Marcin
    Grygolowicz-Pawlak, Ewa
    Bakker, Eric
    Date
    2010
    Type
    Journal Article
    
    Metadata
    Show full item record
    Citation
    Pawlak, M. and Grygolowicz-Pawlak, E. and Bakker, E. 2010. Ferrocene Bound Poly(vinyl chloride) as Ion to Electron Transducer in Electrochemical Ion Sensors. Analytical Chemistry. 82 (16): pp. 6887-6894.
    Source Title
    Analytical Chemistry
    DOI
    10.1021/ac1010662
    ISSN
    0003-2700
    School
    Nanochemistry Research Institute
    URI
    http://hdl.handle.net/20.500.11937/39442
    Collection
    • Curtin Research Publications
    Abstract

    We report here on the synthesis of poly(vinyl chloride) (PVC) covalently modified with ferrocene groups (FcPVC) and the electrochemical behavior of the resulting polymeric membranes in view of designing all solid state voltammetric ion sensors. The Huisgen cycloaddition (“click chemistry”) was found to be a simple and efficient method for ferrocene attachment. A degree of PVC modification with ferrocene groups between 1.9 and 6.1 mol % was achieved. The chemical modification of the PVC backbone does not significantly affect the ion-selective properties (selectivity, mobility, and solvent casting ability) of potentiometric sensing membranes applying this polymer. Importantly, the presence of such ferrocene groups may eliminate the need for an additional redox-active layer between the membrane and the inner electric contact in all solid state sensor designs. Electrochemical doping of this system was studied in a symmetrical sandwich configuration: glassy carbon electrode |FcPVC| glassy carbon electrode. Prior electrochemical doping from aqueous solution, resulting in a partial oxidation of the ferrocene groups, was confirmed to be necessary for the sandwich configuration to pass current effectively.The results suggest that only ~2.3 mol % of the ferrocene groups are electrochemically accessible, likely due to surface confined electrochemical behavior in the polymer. Indeed, cyclic voltammetry of aqueous hexacyanoferrate (III) remains featureless at cathodic potentials (down to −0.5 V). This indicates that the modified membrane is not responsive to redox-active species in the sample solution, making it possible to apply this polymer as a traditional, single membrane. Yet, the redox capacity of the electrode modified with this type of membrane was more than 520 μC considering a 20 mm2 active electrode area, which appears to be sufficient for numerous practical ion voltammetric applications. The electrode was observed to operate reproducibly, with 1% standard deviation, when applying pulsed amperometric techniques.

    Related items

    Showing items related by title, author, creator and subject.

    • Electrochemical Mechanism of Ferrocene-Based Redox Molecules in Thin Film Membrane Electrodes
      Cuartero, M.; Acres, R.; Bradley, J.; Jarolimova, Z.; Wang, L.; Bakker, E.; Crespo, G.; De Marco, Roland (2017)
      © 2017 Cyclic voltammetry (CV) in chloride-based aqueous electrolytes of ferrocene molecule doped thin membranes (~200 nm in thickness) on glassy carbon (GC) substrate electrodes, both plasticized poly(vinyl chloride) ...
    • Transportation and Accumulation of Redox Active Species at the Buried Interfaces of Plasticized Membrane Electrodes
      Sohail, M.; De Marco, Roland; Jarolímová, Z.; Pawlak, M.; Bakker, E.; He, N.; Latonen, R.; Lindfors, T.; Bobacka, J. (2015)
      © 2015 American Chemical Society. The transportation and accumulation of redox active species at the buried interface between glassy carbon electrodes and plasticized polymeric membranes have been studied using synchrotron ...
    • Calixarenes as potential lonophores for Thallium lonselective electrodes
      Chester, Ryan (2007)
      The first part of this thesis reports the synthesis of five calixarene molecules and their incorporation into ISEs as thallium(I) selective ionophores for use in clinical and environmental analysis. Four calix[4]arene ...
    Advanced search

    Browse

    Communities & CollectionsIssue DateAuthorTitleSubjectDocument TypeThis CollectionIssue DateAuthorTitleSubjectDocument Type

    My Account

    Admin

    Statistics

    Most Popular ItemsStatistics by CountryMost Popular Authors

    Follow Curtin

    • 
    • 
    • 
    • 
    • 

    CRICOS Provider Code: 00301JABN: 99 143 842 569TEQSA: PRV12158

    Copyright | Disclaimer | Privacy statement | Accessibility

    Curtin would like to pay respect to the Aboriginal and Torres Strait Islander members of our community by acknowledging the traditional owners of the land on which the Perth campus is located, the Whadjuk people of the Nyungar Nation; and on our Kalgoorlie campus, the Wongutha people of the North-Eastern Goldfields.