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Abstract:

Kinetic studies on the photoinduced electron transfer reduction of a variety of halomethanes in acetonitrile and ethanol at 298 K are reported in terms of the quenching rate constants (kq) with a series of reductants (carbazoles and anthracenes) whose one-electron oxidation potentials (Eox) have been measured again in the present work vs. SCE and independently vs. ferrocene. The Rehm-Weller Gibbs energy relationship is applied to determine the fundamental parameters for the one-electron reduction, i.e., the one-electron reduction potentials (ERX/RẊ) of the halomethanes and the intrinsic barrier for the electron transfer reduction (ΔG‡o). The ERX/RX-̇ values obtained were related to the concerted electron transfer-bond breaking reduction potentials (ERX/R·+x-) and the standard free enthalpies of dissociation of RX-̇ (ΔGo,dissRX-̇) were estimated in each solvent. Additionally, the one-electron reduction potential (ERX/RX-̇) values estimated in acetonitrile were also related to different thermodynamic parameters such as electron affinity (EA), LUMO-HOMO energy differences (ΔE) and the bond dissociation energy (DRX). Optimized geometry, EA and ΔE for halomethanes were calculated by an ab initio method at the B3LYP level using 3-21G, 6-31 + G(d,p) and G-311 + G(3df,2pd) basis sets. In all these cases good linear correlations were obtained. The ΔG‡o values obtained are compared with those calculated using the equation ΔG‡o = λ/4 with λ = λi + λo where the solvent reorganization energy (λo) and the inner-sphere reorganization energies (λi) associated with the structural change upon the electron-transfer process were calculated, the former by using the Marcus-Hush model and the latter by using semiempirical and ab initio molecular modeling and QSAR properties. Results obtained from the preparative irradiation of carbazoles in the presence of halomethanes, which are consistent with a photoinduced electron transfer mechanism are also discussed.

Registro:

Documento: Artículo
Título:Outer-sphere electron transfer from carbazoles to halomethanes. Reduction potentials of halomethanes measured by fluorescence quenching experiments.
Autor:Bonesi, S.M.; Erra-Balsells, R.
Filiación:Depto. de Quimica Organica, FCEyN-UBA, Pabellon 2, 3 Ciudad Universitaria, 1428 Buenos Aires, Argentina
Palabras clave:Charge transfer; Dissociation; Electron transport properties; Enthalpy; Fluorescence; Gibbs free energy; Irradiation; Mathematical models; Molecular dynamics; Quenching; Rate constants; Reduction; Carbazoles; Electron transfer; Halomethanes; Solvent reorganization energy; Organic compounds
Año:2000
Número:7
Página de inicio:1583
Página de fin:1595
Título revista:Journal of the Chemical Society. Perkin Transactions 2
Título revista abreviado:J Chem Soc Perkin Trans 2
ISSN:03009580
CODEN:JCPKB
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03009580_v_n7_p1583_Bonesi

Referencias:

  • Albini, A., Sulpizio, A., (1988) Photoinduced Electron Transfer, (PART C), p. 88. , M. A. Fox and M. Chanon, Eds., Elsevier, Amsterdam
  • Kochi, J.K., (1990) Acta Chem. Scand., 44, p. 409
  • Saeva, F.D., (1990) Top. Curr. Chem., 156, p. 59
  • Maslak, P., Kula, J., Chateauneuf, J.E., (1991) J. Am. Chem. Soc., 13, p. 2304
  • Simon, J.D., Peter, K.S., (1991) Organometallics, 2, p. 1876
  • Ohashi, M., Otami, S., Kyushin, S., (1991) Chem. Lett., p. 631
  • Mautner, M., Neta, P., Norris, R.K., Wilson, K.J., (1986) J. Phys. Chem., 90, p. 168
  • Neta, P., Behar, D., (1981) J. Am. Chem. Soc., 103, p. 103
  • Andrieux, C.P., Le Gorande, A., Savéant, J.M., (1992) J. Am. Chem. Soc., 114, p. 6892
  • Savéant, J.M., (1992) J. Am. Chem. Soc., 114, p. 10595
  • Savéant, J.M., (1993) Acc. Chem. Res., 26, p. 455
  • Savéant, J.M., Dissociative electron transfer (1994) Advances in Electron Transfer Chemistry, 4, pp. 53-116. , P. S. Mariano, Ed., JAI Press, New York
  • Andrieux, C.P., Savéant, J.M., Tardy, C., (1997) J. Am. Chem. Soc., 119, p. 11546. , and references cited therein
  • Chen, I., Farahat, M.S., Gaillard, E.R., Fraid, S., Whitten, D.G., (1996) J. Photochem. Photobiol. A: Chem., 95, p. 21
  • Arnold, B.R., Scaiano, J.C., McGimpsey, W.G., (1992) J. Am. Chem. Soc., 114, p. 9978
  • Andrieux, C.P., Gelis, L., Medebielle, M., Pinson, J., Savéant, J.M., (1990) J. Am. Chem. Soc., 112, p. 3509
  • Eberson, L., Ekstrom, M., (1988) Acta Chem. Scand., Sect. B, 41, p. 40
  • Eberson, L., Ekstrom, M., (1988) Acta Chem. Scand., Sect. B, 42, p. 101
  • Eberson, L., Ekstrom, M., (1988) Acta Chem. Scand., Sect. B, 42, p. 113
  • Eberson, L., Ekstrom, M., Lund, T., Lund, H., (1989) Acta Chem. Scand., Sect. B, 43, p. 101
  • Von Stackelberg, M., Strack, W.Z., (1949) Elektrochem., 53, p. 118
  • Casanova, J., Eberson, L., (1973) The Chemistry of the Carbon Halogen Bond, p. 979. , S. Patai, Ed., Wiley, New York
  • Mishra, S.P., Symons, M.C.R., (1973) J. Chem. Soc., Chem. Commun., 577
  • Brickenstein, E.Kh., Khairutdinov, R.F., (1982) Chem. Phys. Lett., 115, p. 176
  • Andrieux, C.P., Savéant, J.M., Tardy, C., (1998) J. Am. Chem. Soc., 120, p. 4167
  • Gaillard, E.R., Whitten, D.G., (1996) Acc. Chem. Res., 29, p. 292
  • Mattes, S.L., Farid, S., (1982) Acc. Chem. Res., 15, p. 80
  • Dinnocenzo, J.P., Todd, W.P., Simpson, T.R., Gould, I.R., (1990) J. Am. Chem. Soc., 112, p. 2468
  • Yoon, V.C., Mariano, P.S., Givens, R.S., Atwater, B.W., (1994) Advances in Electron Transfer in Chemistry, 4. , Ed. P. S. Mariano, JAI Press, Greenwich CT
  • Whitten, D.G., Chesta, C., Ci, X., Kellett, M.A., Yan, V.W., (1991) Photochemical Processes in Organized Molecular Systems, , K. Honda, Ed., Elsevier, Amsterdam
  • Maslak P., Jr., Chapman W.H., Jr., Vallombroso, T.M., Watson, B.A., (1975) Can. J. Chem., 53, p. 3175
  • Bonesi, S.M., Erra-Balsells, R., (1997) J. Photochem. Photobiol. A: Chem., 110, p. 271
  • Bonesi, S.M., (1995), PhD Thesis, Universidad de Buenos Aires; Bonesi, S.M., Erra-Balsells, R., (1991) J. Photochem. Photobiol. A: Chem., 56, p. 55
  • Bonesi, S.M., Erra-Balsells, R., (1991) J. Heterocycl. Chem., 28, p. 1035
  • Bonesi, S.M., Erra-Balsells, R., (1991) An. Asoc. Quim. Argent., 79, p. 113
  • Bonesi, S.M., Erra-Balsells, R., (1997) J. Heterocycl. Chem., 34, p. 877
  • Bonesi, S.M., Erra-Balsells, R., (1997) J. Heterocycl. Chem., 34, p. 891
  • Perrin, D.D., Armarego, W.L.F., (1988) Purification of Laboratory Chemicals, 3rd Edn., , Pergamon Press, New York
  • Hatchard, C.G., Parker, C.A., (1956) Proc. R. Soc. London, Ser. A, 235, p. 518
  • (1998), HyperChem Suite, Autodesk Inc., Ontario; Clark, T.A., (1985) Handbook of Computational Chemistry, p. 97. , Wiley, New York
  • Becke, A.D., (1988) Phys. Rev. A, 38, p. 3098
  • Lee, C., Yang, W., Parr, R.G., (1988) Phys. Rev. B, 37, p. 785
  • Becke, A.D., (1993) J. Chem. Phys., 98, p. 5648
  • Foresman, J.B., Frisch, A.E., (1996) Exploring Chemistry with Electronic Structure, , Gaussian Inc., Pittsburgh
  • Frisch, M.J., Trucks, G.W., Schlegel, H.B., Scuseria, E.G., Robb, M.A., Cheeseman, J.R., Zakrzewski, V.G., Pople, J.A., (1998), Gaussian, Inc., Pittsburgh PA; Murov, S.L., Carmicheal, I., Hug, G.L., (1993) Handbook of Photochemistry, 2nd Edn., , Marcel Dekker Inc., New York
  • Kavarnos, G.J., Turro, N.J., (1986) J. Chem. Rev., 86, p. 401
  • Ambrose, J., Nelson, R.F., (1968) J. Electrochem. Soc., 115, p. 1159
  • Carpenter, L.L., Nelson, R.F., (1975) J. Electrochem. Soc., 122, p. 876
  • Reitstoen, B., Parker, V.D., (1991) J. Am. Chem. Soc., 113, p. 6954
  • Chanon, M., Hawley, M.D., Fox, M.A., (1988) Photoinduced Electron Transfer, (PART A), p. 1. , M. Chanon, M. A. Fox, Eds., Elsevier, Amsterdam
  • Mariano, P.S., Stavinoha, J.L., (1984) Synthetic Organic Photochemistry, pp. 145-257. , W. M. Horspool, Ed., Plenum Press, New York
  • Rehm, A., Weller, A., (1969) Ber. Bunsenges, Phys. Chem., 73, p. 839
  • Rehm, A., Weller, A., (1970) Isr. J. Chem., 8, p. 259
  • Eberson, L., (1987) Electron Transfer Reactions in Organic Chemistry, , Springer Verlag, Berlin, Germany
  • Soumillon, J.P., (1993) Top. Curr. Chem., 168, p. 93
  • Murphy, S.T., Zon, C., Miers, J.B., Ballew, R.M., Dlott, D.D., Schuster, G.B., (1993) J. Phys. Chem., 97, p. 13252
  • Murphy, S., Schuster, G.B., (1995) J. Phys. Chem., 99, p. 511
  • Legros, B., Vandereencken, P., Soumillion, J.P., (1991) J. Phys. Chem., 95, p. 4752
  • Marcus, R.A., (1981) Int. J. Chem. Kinet., 13, p. 865
  • McManis, G.E., Golovin, M.N., Weaver, M.J., (1986) J. Phys. Chem., 90, p. 6563
  • Marcus, R.A., (1956) J. Chem. Phys., 24, p. 4966
  • (1985) Handbook of Chemistry and Physics, 66th Edn., pp. F185. , CRC, Cleveland, OH
  • (1985) Handbook of Chemistry and Physics, 66th Edn., pp. F191. , CRC, Cleveland, OH
  • (1995) Handbook of Chemistry and Physics, 75th Edn., pp. 9-66. , CRC, Cleveland, OH; Table 3
  • (1995) Handbook of Chemistry and Physics, 75th Edn., pp. 10-185. , CRC, Cleveland, OH; Table 4
  • Hasegawa, A., Shiotani, M., William, F., (1977) Faraday Discuss. Chem. Soc., p. 157
  • Hush, N.S., (1958) J. Chem. Phys., 28, p. 967
  • Marcus, R.A., (1977) Theory and Application of Electron Transfer at Electrodes and in Solution, Special Topics in Electrochemistry, pp. 161-179. , P. A Rock, Ed., Elsevier, New York
  • Savéant, J.M., (1978) J. Am. Chem. Soc., 109, p. 6788
  • Savéant, J.M., (1990) Adv. Phys. Org. Chem., 26, p. 1
  • Savéant, J.M., (1987) J. Am. Chem. Soc., 109, p. 6788. , and references cited therein
  • Cox, B.G., Hedvig, G.R., Parker, A.J., Watts, D.W., (1974) Aust. J. Chem., 27, p. 477
  • Geske, D.H., Ragle, M.A., Bambeneck, J.L., Blach, A.L., (1964) J. Am. Chem. Soc., 86, p. 987
  • Geske, D.H., Ragle, M.A., Bambeneck, J.L., Blach, A.L., (1985) Handbook of Chemistry and Physics, 66th Edn., pp. D50. , CRC, Cleveland, OH
  • Hush, N.S.Z., (1957) Electrochemistry, 61, p. 734
  • Eberson, L., (1982) Acta Chem. Scand., Sect. B, 36, p. 533
  • Klassen, N.V., Ross, C.K., (1987) J. Phys. Chem., 91, p. 3668
  • Robert, M., Savéant, J.M., (2000) J. Am. Chem. Soc., 122, p. 514

Citas:

---------- APA ----------
Bonesi, S.M. & Erra-Balsells, R. (2000) . Outer-sphere electron transfer from carbazoles to halomethanes. Reduction potentials of halomethanes measured by fluorescence quenching experiments. Journal of the Chemical Society. Perkin Transactions 2(7), 1583-1595.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03009580_v_n7_p1583_Bonesi [ ]
---------- CHICAGO ----------
Bonesi, S.M., Erra-Balsells, R. "Outer-sphere electron transfer from carbazoles to halomethanes. Reduction potentials of halomethanes measured by fluorescence quenching experiments." Journal of the Chemical Society. Perkin Transactions 2, no. 7 (2000) : 1583-1595.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03009580_v_n7_p1583_Bonesi [ ]
---------- MLA ----------
Bonesi, S.M., Erra-Balsells, R. "Outer-sphere electron transfer from carbazoles to halomethanes. Reduction potentials of halomethanes measured by fluorescence quenching experiments." Journal of the Chemical Society. Perkin Transactions 2, no. 7, 2000, pp. 1583-1595.
Recuperado de https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03009580_v_n7_p1583_Bonesi [ ]
---------- VANCOUVER ----------
Bonesi, S.M., Erra-Balsells, R. Outer-sphere electron transfer from carbazoles to halomethanes. Reduction potentials of halomethanes measured by fluorescence quenching experiments. J Chem Soc Perkin Trans 2. 2000(7):1583-1595.
Available from: https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03009580_v_n7_p1583_Bonesi [ ]