DocumentCode
1101359
Title
Femtosecond electron solvation in micellar solutions: Application to one-electron transfer kinetic in the univalent reduction of a coenzyme
Author
Gauduel, Yann ; Migus, Arnold ; Martin, Jean-Louis ; Antonetti, Andre
Author_Institution
Ecole Polytechnic, Palaiseau, France
Volume
20
Issue
12
fYear
1984
fDate
12/1/1984 12:00:00 AM
Firstpage
1370
Lastpage
1374
Abstract
Femtosecond UV pulses are used to generate solvated electrons and then initiate the univalent reduction of an oxidized coenzyme (βNAD+). These phenomena are monitored, at the same femtosecond level, by time-resolved absorption spectroscopy techniques. These experiments show that the subpicosecond dynamics of electron solvation in the polar water bulk of micellar solutions is strongly dependent on the nature and the type of micelles forming the surfactant. In deoxygenated aqueous micelles, the charged micellar surface prevents the reverse electron transfer with cationic radical (PTH+) entrapped in the nonpolar inner core. Univalent reduction of oxidized nicotinamide adenine dinucleotide (βNAD+). by one-electron transfer reaction with a time constant of 270 ps has been observed implying that this coenzyme has retained its ability to mediate electron transfer when solubilized in the semirigid environment of the polar water bulk of aqueous micelles.
Keywords
Biochemistry; Laser biomedical applications; Laser chemistry applications; Ultraviolet radiation effects; Absorption; Biomembranes; Charge transfer; Chemistry; Electrons; Ionization; Kinetic theory; Monitoring; Optical pulse generation; Production;
fLanguage
English
Journal_Title
Quantum Electronics, IEEE Journal of
Publisher
ieee
ISSN
0018-9197
Type
jour
DOI
10.1109/JQE.1984.1072329
Filename
1072329
Link To Document