Effect of structural modifications on the spectroscopic properties and dynamics of the excited states of peridinin

The spectroscopic properties and dynamics of the lowest excited singlet states of peridinin and two derivatives have been studied by steady-state absorption and fast-transient optical spectroscopic techniques. One derivative denoted PerOlEs, possesses a double bond and a methyl ester group instead o...

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Veröffentlicht in:Archives of biochemistry and biophysics 2009-03, Vol.483 (2), p.146-155
Hauptverfasser: Chatterjee, Nirmalya, Niedzwiedzki, Dariusz M., Aoki, Kazuyoshi, Kajikawa, Takayuki, Katsumura, Shigeo, Hashimoto, Hideki, Frank, Harry A.
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Sprache:eng
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Zusammenfassung:The spectroscopic properties and dynamics of the lowest excited singlet states of peridinin and two derivatives have been studied by steady-state absorption and fast-transient optical spectroscopic techniques. One derivative denoted PerOlEs, possesses a double bond and a methyl ester group instead of the r-ylidenebutenolide of peridinin. Another derivative denoted PerAcEs, is the biosynthetic precursor of peridinin and possesses a triple bond and a methyl ester group corresponding to the r-ylidenbutenolide function. Ultrafast time-resolved spectroscopic experiments in the visible and near-infrared regions were performed on the molecules and reveal the energies and regarding the structural features and interactions responsible for the unusual solvent-induced changes in the steady-state and transient absorption spectra and dynamics of dynamics of the excited electronic states. The data also provide information peridinin.
ISSN:0003-9861
1096-0384
DOI:10.1016/j.abb.2008.10.035