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160 gerasimov, O.V. and Lymar, S.V. The yield of hydroxyl radical from the decom-
position of peroxynitrous acid. Inorg. Chem. 1999, 38 , 4317-4321.
161 Hodges, g.R. and Ingold, K.U. Cage-escape of geminate radical pairs can produce
peroxynitrate from peroxynitrite under a wide variety of experimental condi-
tions. J. Am. Chem. Soc. 1999, 121 , 10695-10701.
162 Kirsch, M., Korth, H.-g., Wensing, A., Sustmann, R., and de groot, H. Product
formation and kinetic simulations in the pH range 1-14 account for a free-radical
mechanism of peroxynitrite decomposition. Arch. Biochem. Biophys. 2003, 418 ,
133-150.
163 Kissner, R., Thomas, C., Hamsa, M.S.A., Van Eldik, R., and Koppenol, W.H. Evalu-
ation of activation volumes for the conversion of peroxynitrous to nitric acid.
J. Phys. Chem. A 2003, 107 , 11261-11263.
164 Coddington, J.W., Wherland, S., and Hurst, J.K. Pressure dependence of peroxyni-
trite reactions. Support for a radical mechanism. Inorg. Chem. 2001, 40 ,
528-532.
165 goldstein, S., Meyerstein, d., Van Eldik, R., and Czapski, g. Spontaneous reac-
tions and reduction by iodide of peroxynitrite and peroxynitrate: mechanistic
insight from activation parameters. J. Phys. Chem. A 1997, 101 , 7114-7118.
166 goldstein, S., Meyerstein, d., Van Eldik, R., and Czapski, g. Peroxynitrous acid
decomposes via homolysis: evidence from high-pressure pulse radiolysis. J. Phys.
Chem. A 1999, 103 , 6587-6590.
167 gratzel, M., Henglein, A., Lilie, J., and Beck, g. Pulse radiolysis of some elemen-
tary oxidation-reduction processes of nitrite ion. Berichte Der Bunsen-Gesellschaft
Fur Physikalische Chemie 1969, 73 , 646-653.
168 Merényi, g. and Lind, J. Free radical formation in the peroxynitrous acid
(ONOOH)/peroxynitrite (ONOO ) system. Chem. Res. Toxicol. 1998, 11 ,
245-246.
169 goldstein, S., Saha, A., Lymar, S.V., and Czapski, g. Oxidation of peroxynitrite
by inorganic radicals: a pulse radiolysis study. J. Am. Chem. Soc. 1998, 120 ,
5549-5554.
170 goldstein, S., Czapski, g., Lind, J., and Merényi, g. gibbs energy of formation of
peroxynitrite—order restored. Chem. Res. Toxicol. 2001, 14 , 657-660.
171 gratzel, M., Taniguch, S., and Henglein, A. Study with pulse radiolysis of NO-
oxidation-reduction processes of nitrite ion. Berichte Der Bunsen-Gesellschaft
Fur Physikalische Chemie 1970, 74 , 488-492.
172 Treinin, A. and Hayon, E. Absorption spectra and reaction kinetics of NO 2 , N 2 O 3 ,
and N 2 O 4 in aqueous solution. J. Am. Chem. Soc. 1970, 92 , 5821-5828.
173 goldstein, S., Czapski, g., Lind, J., and Merényi, g. Effect of ·NO on the decom-
position of peroxynitrite: reaction of N 2 O 3 with ONOO . Chem. Res. Toxicol. 1999,
12 , 132-136.
174 gunaydin, H. and Houk, K.N. Molecular dynamics simulation of the HOONO
decomposition and the HO /NO
2 caged radical pair in water. J. Am. Chem. Soc.
2008, 130 , 10036-10037.
175 Kissner, R. and Koppenol, W.H. Product distribution of peroxynitrite decay as a
function of pH, temperature, and concentration. J. Am. Chem. Soc. 2002, 124 ,
234-239.
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