• Title of article

    Proton uptake vs. redox driven release from metal–organic-frameworks: Alizarin red S reactivity in UMCM-1

  • Author/Authors

    Halls، نويسنده , , Jonathan E. and Ahn، نويسنده , , Sunyhik D. and Jiang، نويسنده , , Dongmei and Keenan، نويسنده , , Luke L. and Burrows، نويسنده , , Andrew D. and Marken، نويسنده , , Frank، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2013
  • Pages
    8
  • From page
    168
  • To page
    175
  • Abstract
    Small redox active molecules such as alizarin red S are readily adsorbed and bound into redox-inactive metal–organic framework hosts such as UMCM-1. Redox activity of the bound guest molecule is of interest for electrochemical conversions and electrocatalysis within pores. For the reduction of alizarin red S charge compensating proton uptake into pores is expected. However, it is shown here that alizarin red S redox processes in UMCM-1 immersed in aqueous electrolyte, ethanolic electrolyte, and in acetonitrile electrolyte media are dominated instead by surface processes and the potential driven reductive release of leuco-alizarin red S into the surrounding solution. Self-mediation via released alizarin red S occurs, whereas in acetonitrile a cobaltocene redox mediator is employed for the potential driven redox release of alizarin red S from the UMCM-1 host lattice.
  • Keywords
    Metal–organic framework , Release , Alizarin Red S , solvent , Voltammetry , mediator , Electron transfer , Electrocatalysis
  • Journal title
    Journal of Electroanalytical Chemistry
  • Serial Year
    2013
  • Journal title
    Journal of Electroanalytical Chemistry
  • Record number

    1676696