Electronic spectra of indolyl radicals: A time-dependent DFT study

Neutral and cationic indolyl radicals, such as those arising from tryptophan and melatonin, are involved in a variety of physiological situations. Due to their short life times, experimental characterization of these species is incomplete. We have performed density functional theory (DFT) calculatio...

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Autor principal: Crespo, A.
Otros Autores: Turjanski, A.G, Estrin, D.A
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2002
Acceso en línea:Registro en Scopus
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Registro en la Biblioteca Digital
Aporte de:Registro referencial: Solicitar el recurso aquí
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100 1 |a Crespo, A. 
245 1 0 |a Electronic spectra of indolyl radicals: A time-dependent DFT study 
260 |c 2002 
270 1 0 |m Estrin, D.A.; Departamento Quimica Inorganica, Analitica y Quimica Fisica, INQUIMAE-CONICET, Pabellón 2, Buenos Aires, Argentina; email: dario@q1.fcen.uba.ar 
506 |2 openaire  |e Política editorial 
504 |a Turjanski, A.G., Leonik, F.M., Estrin, D.A., Rosenstein, R.E., Doctorovich, F., (2000) J. Am. Chem. Soc, 122, p. 10468 
504 |a Reiter, R.J., (1999) Endocr. Rev, 12, p. 151 
504 |a Posener, M.L., Adams, G.E., Wardman, P., Cundall, R.B., (1976) J. Chem. Soc., Faraday Trans, p. 2231. , 2.72 
504 |a Baldwin, J., Krebs, C., Ley, B.A., Edmondson, D.E., Huynh, B.H., Bollinger J.M., Jr., (2000) J. Am. Chem. Soc, 122, p. 12195 
504 |a Shen, X., Lind, J., Merényi, G., (1987) J. Phys. Chem, 91, p. 4403 
504 |a Jovanovic, S.V., Harriman, A., Simic, M.G., (1986) J. Phys. Chem, 90, p. 1935 
504 |a Jovanovic, S.V., Steeken, S., (1992) J. Phys. Chem, 96, p. 6674 
504 |a Mahal, H.S., Sharma, H.S., Mukherjee, T., (1999) Free Rad. Biol. Med, 26, p. 557 
504 |a Zhang, H., Squadrito, G.L., Pryor, W.A., (1998) Biochem. Biophys. Res. Commun, 251, p. 83 
504 |a Hela, P.G., Anipindi, N.R., Priyadarsini, K.I., O'Neill, P., (1999) J. Phys. Chem. B, 103, p. 8606 
504 |a Poeggeler, B., Reiter, R.J., Hardeland, R., (1996) Redox Rep, 2 (3), p. 179 
504 |a Matuszak, Z., Reszka, K.J., Chignell, C.F., (1997) Free Rad. Biol. Med, 23, p. 367 
504 |a Baron, A.J., Stevens, C., Wilnot, C., Seneviratne, K.D., Blakeley, V., Dooley, D.M., Phillips, S.E.V., McPherson, M.J., (1994) J. Biol. Chem, 269, p. 25095 
504 |a Turjanski, A.G., Rosenstein, R.E., Estrin, D.A., (1998) J. Med. Chem, 41, p. 3684 
504 |a Walden, S.E., Wheeler, R.A., (1996) J. Phys. Chem, 100, p. 1530 
504 |a Frisch, M.J., (1998), GAUSSIAN 98, Rev. A7, Gaussian, Pittsburgh PA; Becke, A., (1993) J. Chem. Phys, 98, p. 5648 
504 |a Lee, C., Yang, W., Parr, R., (1988) Phys. Rev. B, 37, p. 785 
504 |a Godbout, N., Salahub, D.R., Andzelm, J., Wimmer, E., (1992) Can. J. Chem, 70, p. 560 
504 |a Runge, E., Gross, E.K.U., (1984) Phys. Rev. Lett, 52, p. 997 
504 |a Gross, E.K.U., Kohn, W., (1990) Adv. Quantum Chem, 21, p. 255 
504 |a Casida, M.E., (1995) Recent Advances in Density Functional Methods, (PART I), p. 155. , D.P. Chong (Ed.), World Scientific, Singapure 
504 |a Bauernschmitt, R., Ahlrichs, R., (1996) Chem. Phys. Lett, 256, p. 454 
504 |a Jamorsky, C., Casida, M.E., Salahub, D.R., (1996) J. Chem. Phys, 104, p. 5134 
504 |a Bauernschmitt, R., Häser, M., Treutler, O., Ahlrichs, R., (1997) Chem. Phys. Lett, 264, p. 573 
504 |a Stratmann, R.E., Scuseria, G.E., Frisch, M.J., (1998) J. Chem. Phys, 109, p. 8218 
504 |a Adamo, C., Barone, V., (2000) Chem. Phys. Lett, 330, p. 152 
504 |a Hirata, S., Head-Gordon, M., (1999) Chem. Phys. Lett, 314, p. 291 
504 |a Pou-Amérigo, R., Viruela, P.M., Viruela, R., Rubio, M., Ortí, E., (2002) Chem. Phys. Lett, 352, p. 491 
504 |a Andreu, R., Orduna, J., Garín, J., (2001) Tetrahedron, 57, p. 1358 
504 |a Hirata, S., Lee, T.J., Head-Gordon, M., (1999) J. Chem. Phys, 19, p. 8904 
504 |a Zwier, J.M., Hoeth, J.W., Brouwer, A.M., (2001) J. Org. Chem, 66, p. 466 
504 |a Casida, M.E., Jamorsky, C., Casida, K.C., Salahub, D.R., (1998) J. Chem. Phys, 108, p. 4439 
504 |a Tozer, D.J., Handy, N.C., (1998) J. Chem. Phys, 109, p. 10180 
504 |a (1966), p. 3453. , The Sadtler Standard Spectra, Sadtler Research Laboratories, Philadelphia, Standard Ultra Violet 
520 3 |a Neutral and cationic indolyl radicals, such as those arising from tryptophan and melatonin, are involved in a variety of physiological situations. Due to their short life times, experimental characterization of these species is incomplete. We have performed density functional theory (DFT) calculations in order to provide information of the electronic spectral properties of indole, melatonin and tryptophan radical and radical cations. We predict that the neutral and cationic radicals exhibit absorption ranges from 450 to 500 nm and from 520 to 570 nm, respectively. © 2002 Elsevier Science B.V. All rights reserved.  |l eng 
593 |a Departamento de Quimica Inorgánica, Analítica y Química Física, INQUIMAE-CONICET, Pabellón 2, (C1428EHA), Buenos Aires, Argentina 
700 1 |a Turjanski, A.G. 
700 1 |a Estrin, D.A. 
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