Dissociative electron transfer reactions

Springer Science and Business Media LLC - Tập 34 Số 2 - Trang 57-68 - 1998
Yurii A. Maletin1,2, Roderick D. Cannon2
1School of Chemical Sciences, University of East Anglia, Norwich, United Kingdom
2V.I.Vernadskii Institute of General and Inorganic Chemistry, National Academy of Sciences of Ukraine, Kiev 142, Ukraine

Tóm tắt

Từ khóa


Tài liệu tham khảo

R. A. Marcus and N. Sutin, Biochim. Biophys. Acta,811, No. 3, 265–322 (1985).

R. D. Cannon, Electron Transfer Reactions, Butterworths, London (1980).

V. D. Pokhodenko, A. A. Beloded, and V. G. Koshechko, Oxidation—Reduction Reactions of Free Radicals [in Russian], Nauk. Dumka, Kiev (1977).

Yu. A. Maletin, Ukr. Khim. Zh.,59, No. 5, 519–526 (1993).

L. D. Landau and E. M. Lifshitz, Quantum Mechanics. Nonrelativistic Theory [in Russian], Gos. Izdat. Fiz.-Mat. Lit., Moscow (1963).

I. Hahndorf, E. Illenberger, L. Lehr, and J. Manz, Chem. Phys. Lett.,231, No. 4–6, 460–466 (1994).

T. Underwood-Lemons, T. J. Gergel, and J. H. Moore, J. Chem. Phys.,102, No. 1, 119–123 (1995).

Y. Le Coat, J.-P. Ziesel, and J.-P. Guillotin, J. Phys. B.,27, No. 5, 965–979 (1994).

H. J. T. Preston and J. J. Kauffman, Chem. Phys. Lett.,50, No. 1, 157–161 (1977).

I. I. Fabrikant, J. Phys. B.,24, No. 4, 2213–2221 (1991).

I. I. Fabrikant, D. M. Pearl, P. D. Burrow, and G. A. Gallup, in: Electron Collisions with Molecules, Clusters and Surfaces, H. Ehrhardt and Z. A. Morgan, (eds.), Plenum, New York (1994).

Z. L. Petrovic, W. C. Wang, and L. C. Lee, J. Chem. Phys.,90, No. 6, 3145–3152 (1989).

A. Modelli, F. Scagnolari, G. Distefano, et al., Chem. Phys.,145, No. 1, 89–99 (1990).

M. B. Robin, Can. J. Chem.,63, No. 7, 2032–2043 (1985).

D. M. Pearl, P. D. Burrow, J. J. Nash, et al., J. Am. Chem. Soc.,115, No. 21, 9876–9877 (1993).

D. M. Pearl, P. D. Burrow, J. J. Nash, et al., J. Phys. Chem.,99, No. 33, 12379–12381 (1995).

C. Bulliard, M. Allan, and E. Haselbach, J. Phys. Chem.,98, No. 43, 11040–11045 (1994).

J. K. Olthoff, K. L. Stricklett, R. J. Van Brunt, et al., J. Chem. Phys.,98, No. 12, 9466–9471 (1993).

M. G. Curtis and I. C. Walker, J. Chem. Soc., Farad. Trans.,88, No. 19, 2805–2810 (1992).

M. A. D. Fluendy and I. C. Walker, J. Chem. Soc., Farad. Trans.,91, No. 15, 2249–2255 (1995).

T. Jaffke, M. Meinke, R. Hashemi, et al., Chem. Phys. Lett.,193, No. 1–3, 62–68 (1992).

K. Suzuki, T. Kondow, and K. Kuchitsu, J. Phys. Chem.,94, No. 17, 6615–6618 (1990).

X. Ling, M. A. Durham, A. Kalamarides, et al., J. Chem. Phys.,93, No. 12, 8669–8675 (1990).

E. R. Fisher, M. E. Weber, and P. B. Armentrout, J. Chem. Phys.,92, No. 4, 2296–2302 (1990).

E. A. Fisher and P. B. Armentrout, J. Chem. Phys.,93, No. 7, 4858–4867 (1990).

B. L. Kickel, E. A. Fisher, and P. B. Armentrout, J. Phys. Chem.,97, No. 39, 10198–10203 (1993).

M. Tsuji, T. Funatsu, H. Kouno, and Y. Nishimura, J. Chem. Phys.,97, No. 11, 8216–8222 (1992).

M. Tsuji, T. Funatsu, H. Kouno, et al., J. Chem. Phys.,96, No. 5, 3649–3655 (1992).

M. Tsuji, T. Funatsu, H. Kouno, and Y. Nishimura, Chem. Phys. Lett.,192, No. 4, 362–367 (1992).

M. Tsuji, H. Kouno, and K. Matsumura, J. Chem. Phys.,98, No. 3, 2011–2022 (1993).

M. Tsuji, T. Funatsu, K. Matsumura, and Y. Nishimura, J. Chem. Phys.,99, No. 6, 4526–4532 (1993).

E. D. Sprague and F. Williams,54, No. 8, 5425–5431 (1971).

J.-M. Savéant, Bull. Soc. Chim. France, No. 2, 225–237 (1988).

J.-M. Savéant, Accts. Chem. Res.,26, No. 9, 455–461 (1993).

W. Adcock, C. I. Clark, A. Houmam, et al., J. Am. Chem. Soc.,116, No. 11, 4653–4659 (1994).

W. Adcock, C. P. Andrieux, C. I. Clark, et al., J. Am. Chem. Soc.,117, No. 31, 8285–8286 (1995).

R. K. Norris, S. D. Barker, and P. Neta,106, No. 11, 3140–3144 (1984).

G. Grimshaw, J. R. Langan, and G. A. Salmon, J. Chem. Soc., Farad. Trans.,90, No. 1, 75–81 (1994).

V. G. Mairanovskii, Dokl. Akad. Nauk SSSR,284, No. 2, 386–390 (1985).

V. G. Mairanovsky, in: Extended Abstracts, Thirty-Seventh Meeting of the Int. Soc. Electrochem., Vol. 4, Vilnius (1986), pp. 92–94.

C. P. Andrieux, E. Differding, M. Robert, and J.-M. Savéant, J. Am. Chem. Soc.,115, No. 15, 6592–6599 (1993).

C. P. Andrieux, M. Robert, F. D. Saeva, and J.-M. Savéant, J. Am. Chem. Soc.,116, No. 17, 7864–7871 (1994).

Yu. A. Maletin, K. É. Gulyanitskii, V. V. Orda, and I. I. Maletina, Ukr. Khim. Zh.,54, No. 8, 816–818 (1988).

I. P. Gragerov, L. A. Kiprianova, and A. F. Levit, Chemically-Induced Dynamic Nuclear Polarization in the Study of Organic Reaction Mechanisms [in Russian], Nauk. Dumka, Kiev (1985).

Yu. A. Maletin, N. G. Strizhakova, T. V. Verkhovlyuk, and I. A. Sheka, Teor. Éksp. Khim.,24, No. 4, 450–455 (1988).

Yu. A. Maletin, A. A. Dubinskaya, and K. É. Gulyanitskii, Teor. Éksp. Khim.,24, No. 4, 501–504 (1988).

M. S. Workentin, F. Maran, and D. D. M. Wayner, J. Am. Chem. Soc.,117, No. 7, 2120–2121 (1995).

S. B. Karki, J. P. Dinnocenzo, S. Farid, et al., J. Am. Chem. Soc.,119, No. 2, 431–432 (1997).

Yu. A. Maletin, N. G. Strizhakova, and I. A. Sheka, Dokl. Akad. Nauk SSSR,248, No. 3, 651–654 (1979).

Y. A. Maletin and N. G. Strizhakova, Int. J. Chem. Kinet.,18, No. 1, 13–29 (1986).

D. V. Matyushov and Y. A. Maletin, Chem. Phys.,127, No. 1, 325–334 (1988).

D. Faure, D. Lexa, and J.-M. Savéant, J. Electroanal. Chem.,140, No. 2, 285–295 (1982).

Y. A. Maletin, N. G. Strizhakova, S. G. Kozachkov, and R. D. Cannon, J. Electroanal. Chem.,398, 129–134 (1995).

J.-M. Savéant, J. Am. Chem. Soc.,109, No. 22, 6788–6795 (1987).

E. D. German and A. M. Kuznetsov, J. Phys. Chem.,98, No. 24, 6120–6127 (1994).

E. D. German, A. M. Kuznetsov, and V. A. Tikhomirov, J. Phys. Chem.,99, No. 22, 9095–9101 (1995).

V. A. Tikhomirov, E. D. German, and A. M. Kuznetsov, Chem. Phys.,191, No. 1–3, 25–30 (1995).

R. Yoshimura and T. Tada, Chem. Phys. Lett.,222, No. 6, 626–632 (1994).

V. Perez, J. M. Lluch, and J. Bertran, J. Am. Chem. Soc.,116, No. 22, 10117–10123 (1994).

P. D. Burrow, G. A. Gallup, I. I. Fabrikant, and K. D. Jordan, Austral. J. Phys.,49, 403–423 (1996).