A series of covalently linked (bacterio)chlorin-quinones were synthesized as model compounds for light reactions in photosynthesis. By replacing the more commonly used porphyrin by chlorins, a closer match to the photosynthetically active chlorophylls is achieved. Eight compounds are presented, in w
EPR and ENDOR on Chlorin Anion and Cation Radicals: Electronic Structure of Models for Photosynthetic Electron Transfer
✍ Scribed by Michael Fuhs; Hans Mößler; Martina Huber
- Publisher
- John Wiley and Sons
- Year
- 1997
- Tongue
- English
- Weight
- 264 KB
- Volume
- 35
- Category
- Article
- ISSN
- 0749-1581
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✦ Synopsis
Porphyrins are widely used as electron donors in model systems for electron transfer in primary processes of photosynthesis. More recently, chlorins, whose p electron system is more similar to that of chlorophylls, have become available in model compounds. In this study, the electronic structure of 5,10,15,20tetraphenylchlorinatozinc (ZnTPC) was investigated using electron paramagnetic resonance and electron nuclear double resonance. The orbitals involved in the charge separation and recombination process were studied by performing measurements on the anion and cation radical, respectively. The experimental results were compared with semi-empirical RHF-INDO/SP calculations. On the basis of the results, suggestions for the optimal design of model systems with long-lived charge-separated states are made. The inÑuence of the linking position on the efficiency of charge separation is shown. Ratios of 30 : 1 are calculated for the efficiencies expected for di †erent linking positions.
📜 SIMILAR VOLUMES
Thermodynamic stability properties of 11 p-substituted trityl and seven 9-phenylxanthyl carbocations are reported in sulfolane and of their conjugate carbanions in DMSO. The cations are compared by calorimetric heats of hydride transfer from cyanoborohydride ion, their first and second reduction pot