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Photoinduced electron transfer in pyromellitimide-bridged porphyrins
Affiliation:1. Karadeniz Technical University, Faculty of Science, Department of Chemistry, Trabzon, Turkey;2. Bolu Abant Izzet Baysal University, Bolu Vocational School of Technical Sciences, Department of Food Processing, Gölköy, Bolu 14300, Turkey;3. Gebze Technical University, Department of Chemistry, Gebze-Kocaeli 41400, Turkey
Abstract:The kinetics of intramolecular photoinduced electron transfer in a series of pyromellitimide-bridge porphyrins have been studied using transient absorption and fluoresence techniques. The dependence of both charge separation and recombination rates on connecting chain length, metallation state, coordination state, conformation, solvent and temperature have been systematically measured and found to be broadly in agreement with theoretical predictions. In particular, the inverted region is observed at large exoergicity. Also, in the inverted region, when the porphyrin to pyromellitimide separation is large the electron transfer rate can be faster than at small separations; this is also explained by theory. At low temperatures, temperature-independent nuclear tunnelling limits the electron transfer rate, while in solvents having a slow dielectric relaxation this solvent reorientation also limits the rate. Fluorescence data provide evidence of multiple conformations in the free base compounds but in the longer-chained Zn and Mg derivatives, where the pyromellitimide oxygen atoms can bond to the metal, molecular conformations are limited. On addition of basic ligands, this metal to oxygen bonding is released and the electron transfer is switched off.
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