• Title of article

    Self-assembled nanoscale photomimetic models: structure and related dynamics Original Research Article

  • Author/Authors

    Eduard I. Zenkevich، نويسنده , , Christian von Borczyskowski، نويسنده , , Alexander M. Shulga، نويسنده , , Sergei Bachilo، نويسنده , , Ulrich Rempel، نويسنده , , Andreas Willert، نويسنده ,

  • Issue Information
    هفته نامه با شماره پیاپی سال 2002
  • Pages
    25
  • From page
    185
  • To page
    209
  • Abstract
    Using static and time-resolved measurements, dynamics of non-radiative relaxation processes have been studied in self-assembled porphyrin triads of various geometry, containing the main biomimetic components, Zn–porphyrin dimers, free-base extra-ligands (porphyrin, chlorin or tetrahydroporphyrin), and electron acceptors A (quinone or pyromellitimide). The strong quenching of the dimer fluorescence is due to energy and sequential electron transfer (ET) processes to the extra-ligand (∼0.9–1.7 ps), which are faster than a slower ET (34–135 ps) from the dimer to covalently linked A in toluene at 293 K. The extra-ligand S1-state decay (τS=940–2670 ps) is governed by competing processes: a bridge (dimer) mediated long-range (rDA=18–24 Å) superexchange ET to an acceptor, and photoinduced hole transfer from the excited extra-ligand to the dimer followed by possible superexchange ET steps to low-lying charge transfer states of the triads. The subsequent ET steps dimer→monomer→A taking place in the triads, mimic the sequence of primary ET reactions in photosynthetic reaction centers in vivo.
  • Keywords
    Picosecond and femtosecond time-resolved spectroscopy , Porphyrin supramolecular complexes , Fluorescence quenching , Charge and energy transfer
  • Journal title
    Chemical Physics
  • Serial Year
    2002
  • Journal title
    Chemical Physics
  • Record number

    1056270