Flash photolysis techniques were applied to obtain the rate constant &T and the equ~brium constant KET for isoenergetic triplet energy transfer between aromatic ketone chromophores. Mixtures of benzophenone-4K02CH3 and benzophenone4COz(CH2)I&H3 gave KET = 0.95 + 0.1 and mixtures of u-and p-methylben
Femtosecond energy transfer between chromophores in allophycocyanin trimers
โ Scribed by A.V. Sharkov; I.V. Kryukov; E.V. Khoroshilov; P.G. Kryukov; R. Fischer; H. Scheer; T. Gillbro
- Book ID
- 103030095
- Publisher
- Elsevier Science
- Year
- 1992
- Tongue
- English
- Weight
- 405 KB
- Volume
- 191
- Category
- Article
- ISSN
- 0009-2614
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โฆ Synopsis
Ultrafast energy-transfer processes in allophycocyanin (APC) trimers from Mastigocladus laminosus have been examined by a femtosecond absorption technique. Isotropic absorption recovery kinetics with r= 440 + 30 fs were observed in APC trimers at 615 nm. In APC monomers such a fast process was not observed. The anisotropy in both samples was constant and close to 0.4 during the first few picoseconds. The results are consistent with a model of the APC trimer in which the two APC chromophores have different absorption spectra with maxima about 600 and 650 nm. The transfer of energy from the 600 nm chromophore to the 650 nm chromophore occurs in 440 fs and is dominated by the F6rster dipole-dipole energy-transfer mechanism.
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