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Pure Appl. Chem., 1982, Vol. 54, No. 9, pp. 1651-1665

http://dx.doi.org/10.1351/pac198254091651

One and two electron transfer pathways in the photoreduction of flavin

R. Traber, H. E. A. Kramer and Peter Hemmerich

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  • Klein Johannes H., Sunderland Travis L., Kaufmann Christina, Holzapfel Marco, Schmiedel Alexander, Lambert Christoph: Stepwise versus pseudo-concerted two-electron-transfer in a triarylamine–iridium dipyrrin–naphthalene diimide triad. Phys. Chem. Chem. Phys. 2013, 15, 16024. <http://dx.doi.org/10.1039/c3cp51981c>
  • Burai Tarak Nath, Panay Aram Joel, Zhu Haiming, Lian Tianquan, Lutz Stefan: Light-Driven, Quantum Dot-Mediated Regeneration of FMN To Drive Reduction of Ketoisophorone by Old Yellow Enzyme. ACS Catal 2012, 2, 667. <http://dx.doi.org/10.1021/cs300085h>
  • Popielarz Roman, Vogt Otmar: Effect of coinitiator type on initiation efficiency of two-component photoinitiator systems based on Eosin. J Polym Sci A Polym Chem 2008, 46, 3519. <http://dx.doi.org/10.1002/pola.22688>
  • König Burkhard, Pelka Mario, Reichenbach-Klinke Roland, Schelter Jürgen, Daub Jörg: A Model System for Flavoenzyme Activity − Binding of Flavin and Modulation of Its Redox Potentials through Coordination to a Lewis-Acidic Azamacrocyclic Zinc(II) Complex. Eur J Org Chem 2001, 2001, 2297. <http://dx.doi.org/10.1002/1099-0690(200106)2001:12<2297::AID-EJOC2297>3.0.CO;2-R>
  • Bandyopadhyay T., Okada Akira, Tachiya M.: Two-electron transfer reactions involving three paraboloidal potential surfaces in solvents with multiple solvation time scales. J Chem Phys 1999, 110, 9630. <http://dx.doi.org/10.1063/1.478951>
  • Hepp Monika G., Kramer Horst E.A.: Dye-sensitized oxidation of tetramethylpiperidines (HALS) to N-oxyls. J Photochem Photobiol A Chem 1994, 78, 19. <http://dx.doi.org/10.1016/1010-6030(93)03713-Q>
  • Timpe H.-J., Ulrich S., Fouassier J.-P.: Photochemistry and use of decahydroacridine-1,8-diones as photosensitizers for onium salt decomposition. J Photochem Photobiol A Chem 1993, 73, 139. <http://dx.doi.org/10.1016/1010-6030(93)80043-9>
  • Obrenović Snežana: Effects of Respiratory Inhibitors on Red Light and Lumiflavin Induced Betacyanin Formation in Amaranthus caudatus L. Seedlings. Biochemie und Physiologie der Pflanzen 1991, 187, 373. <http://dx.doi.org/10.1016/S0015-3796(11)80043-0>
  • Gbrenovic Snezana: Effect of riboflavie and cyanide on blue light induction of betacyanin formation in Amamnthus caudatus seedlings. Physiol Plant 1985, 65, 418. <http://dx.doi.org/10.1111/j.1399-3054.1985.tb08666.x>
  • Creed David, Caldwell Richard A.: PHOTOCHEMICAL ELECTRON TRANSFER REACTIONS and EXCIPLEXES. Photchem Photbio 1985, 41, 715. <http://dx.doi.org/10.1111/j.1751-1097.1985.tb03627.x>
  • Schmidt Werner: Bluelight-induced, flavin-mediated transport of redox equivalents across artificial bilayer membranes. J Membrane Biol 1984, 82, 113. <http://dx.doi.org/10.1007/BF01868936>
  • Ott Ulrich, Traber Rainer, Hemmerich Peter, Kramer Horst E. A.: THE REDUCTIVE PHOTOALKYLATION OF FLAVIN BY N-ALLYLTHIOUREA. Photchem Photbio 1984, 40, 309. <http://dx.doi.org/10.1111/j.1751-1097.1984.tb04592.x>
  • Takakubo M., Faure J.: RIBOFLAVIN SENSITIZED PHOTOREDUCTION OF NITRO BLUE TETRAZOLIUM ION (NBT2+) IN DEGASSED AQUEOUS SOLUTION. Photchem Photbio 1983, 38, 137. <http://dx.doi.org/10.1111/j.1751-1097.1983.tb03854.x>