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Theoretical Treatment of Magnetic Field Dependent In-cage Backward Electron Transfer During Photooxidation of Ru(II) Complexes
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Ulrich E. Steiner
Veröffentlicht/Copyright:
30. August 1990
Published Online: 1990-8-30
Published in Print: 1990-2-1
© R. Oldenbourg Verlag, München
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- The Degenerate Electron Exchange between N,N-Dimethylanilines and their Radical Cations
- Aspects of Ligand and Electron-Acceptor Dependence of Magnetic Field Effects on Net Electron Transfer Efficiencies in Photooxidation of Ru(II)-trisbipyridyl Type Complexes
- Theoretical Treatment of Magnetic Field Dependent In-cage Backward Electron Transfer During Photooxidation of Ru(II) Complexes
- The Deactivation of Singlet Excited Perylene by Aromatic Molecules in Solution
- The Deactivation of Singlet Excited Perylene by Aromatic Molecules in Solution
Artikel in diesem Heft
- The Degenerate Electron Exchange between N,N-Dimethylanilines and their Radical Cations
- The Degenerate Electron Exchange between N,N-Dimethylanilines and their Radical Cations
- Aspects of Ligand and Electron-Acceptor Dependence of Magnetic Field Effects on Net Electron Transfer Efficiencies in Photooxidation of Ru(II)-trisbipyridyl Type Complexes
- Theoretical Treatment of Magnetic Field Dependent In-cage Backward Electron Transfer During Photooxidation of Ru(II) Complexes
- The Deactivation of Singlet Excited Perylene by Aromatic Molecules in Solution
- The Deactivation of Singlet Excited Perylene by Aromatic Molecules in Solution