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German ED, Kuznetsov AM. 1994. Quantum mechanical theory of dissociative electron transfer
in polar solvents. J Phys Chem 98: 6120 - 6127.
Grimminger J, Bartenschlager S, Schmickler W. 2005. A model for combined electron and
proton transfer in electrochemical systems. Chem Phys Lett 416: 316 - 320.
Gurney RW. 1936. Ions in Solution. Proc Roy Soc A. Cambridge University Press. 134
(1931): 137.
Hush NS. 1958. Adiabatic rate processes at electrodes. I. Energy-charge relationships. J Chem
Phys 28: 962 - 971.
Iwasita T, Schmickler W, Schultze JW. 1985. The influence of the metal on the kinetics of outer
sphere redox reactions. Ber Bunsenges Phys Chem 89: 138 - 140.
Koper MTM, Voth GA. 1998. A theory for adiabatic bond breaking electron transfer reactions at
metal electrodes. Chem Phys Lett 282: 100 - 106.
Koper MTM, van Santen RA. 1999. Interaction of halogens with Hg, Ag and Pt surfaces: A
density functional study. Surf Sci 422: 118 - 131.
Kramers HA. 1940. Brownian motion in a field of force and the diffusional model of chemical
reactions. Physica 7: 284 - 304.
Kuznetsov AN. 1995. Charge Transfer in Physics, Chemistry and Biology. Gordon & Breach.
Levich VG. 1970. Kinetics of reactions with charge transfer. In: Eyring H, Henderson D, Jost W,
editors. Physical Chemistry, an Advanced Treatise. Vol. Xb. New York: Academic Press.
Marcus RA. 1956. On the theory of oxidation-reduction reactions involving electron transfer. I.
J Chem Phys 24: 966 - 979.
Newns
DM.
1969.
Self
consistent
model
of
hydrogen
chemisorption.
Phys
Rev
178:
1123 - 1135.
Parsons R. 1958. The rate of electrolytic hydrogen evolution and the heat of adsorption of
hydrogen. Trans Farad Soc 94: 1053 - 1063.
Pecina O, Schmickler W, Spohr E. 1995. On the mechanism of electrochemical ion transfer
reactions. J Electroanal Chem 394: 29 - 34.
Pecina O, Schmickler W. 1998. On the dynamics of electrochemical ion-transfer reactions.
J Electroanal Chem 450: 303 - 311.
Santos E, Iwasita T, Vielstich W. 1986. On the use of the coulostatic method for the investigation
of fast redox systems. Electrochim Acta 31: 431 - 437.
Santos E, Koper MTM, Schmickler W. 2006. A model for bond-breaking electron transfer at
metal electrodes. Chem Phys Lett 419: 421 - 425.
Santos E, Schmickler W. 2006. d-Band catalysis in electrochemistry. Chem Phys Chem 7:
2282 - 2285.
Santos E, Schmickler W. 2007a. Catalyzed bond-breaking electron transfer: Effect of the
separation of the reactant from the electrode. J Electroanal Chem 607: 101 - 106.
Santos
E,
Schmickler
W.
2007b.
Electrocatalysis
of
hydrogen
oxidation—Theoretical
foundations. Angew Chem Int Ed 46: 8262 - 8265.
Santos E, Schmickler W. 2007c. Fundamental aspects of electrocatalysis. Chem Phys 332:
39 - 48.
Santos E, Koper MTM, Schmickler W. 2008. Bond-breaking electron transfer of diatomic
reactants at metal electrodes. Chem Phys 344: 195 - 201.
Santos E, Schmickler W. 2008. Electronic interactions decreasing the activation barrier for the
hydrogen electro-oxidation reaction. Electrochim Acta 53: 6149 - 6156.
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