• Title of article

    Zeolite-Mediated Photochemical Charge Separation Using a Surface-Entrapped Ruthenium-Polypyridyl Complex

  • Author/Authors

    Kim، Yanghee نويسنده , , Lee، Hyunjung نويسنده , , Dutta، Prabir K. نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    -4214
  • From page
    4215
  • To page
    0
  • Abstract
    Employing the strategy of quaternization of the 2,2ʹ N atoms of the conjugated bipyridine ligand 1,4-bis[2-(4ʹ-methyl-2,2ʹ-bipyrid-4-yl)ethenyl]benzene (L), a polypyridyl complex of ruthenium(II) was tethered on the surface of zeolite Y. Electrochemical and spectroscopic properties of the complex suggest that, upon visible photoexcitation of the MLCT band, the electron is localized on the conjugated ligand rather than the bipyridines. Electron transfer from the surface complex to bipyridinium ions (methyl viologen) within the zeolite was observed. Visible light photolysis of the rutheniumzeolite solid ion-exchanged with diquat and suspended in a propyl viologen sulfonate solution led to permanent formation of the blue propyl viologen sulfonate radical ion in solution. The model that is proposed involves intrazeolitic charge transfer to ion-exchanged diquat followed by interfacial (zeolite to solution) electron transfer to propyl viologen sulfonate in solution. Because of the slow intramolecular back-electron-transfer reaction and the forward electron propagation via the ion-exchanged diquat, Ru(III) is formed. This Ru(III) complex formed on the zeolite is proposed to react rapidly with water in the presence of light, followed by reaction with the propyl viologen sulfonate, to form pyridones and regeneration of Ru(II), which then continues the photochemical process.
  • Keywords
    Complete oxidation , Methane oxidation , Metal catalysts , Partial oxidation , Oscillations
  • Journal title
    INORGANIC CHEMISTRY
  • Serial Year
    2003
  • Journal title
    INORGANIC CHEMISTRY
  • Record number

    67128