78
References
1. M.R. Tarasevich, A. Sadkowski, E. Yeager, in Comprehensive Treatise of Electrochemistry, ed.
by B. Conway, J. O. Bockris, E. Yeager, S. U. M. Khan, R. E. M. White, vol. 7, (Plenum Press,
New York, 1983)
2. R. Adzic, Recent advances in the kinetics of oxygen reduction, in Electrocatalysis, ed. by
J. Lipkowski, P. N. Ross, (Wiley, New York, 1998)
3. G. Wu, K.L. More, C.M. Johnston, P. Zelenay, High-performance electrocatalysts for oxygen
reduction derived from polyaniline, iron, and cobalt. Science 332, 443–447 (2011)
4. E. Proietti, F. Jaouen, M. Lefèvre, N. Larouche, J. Tian, J. Herranz, J.-P. Dodelet, Iron-based
cathode catalyst with enhanced power density in polymer electrolyte membrane fuel cells. Nat.
Commun. 2, Article number: 416 (2011)
5. K.A. Kuttiyiel, Y.M. Choi, S.-M. Hwang, G.-G. Park, T.-H. Yang, D. Su, K. Sasaki, P. Liu,
R.R. Adzic, Enhancement of the oxygen reduction on nitride stabilized Pt-M (M= Fe, Co, and
Ni) core–shell nanoparticle electrocatalysts. Nano Energy 13, 442–449 (2015)
6. R.W. Zurilla, R.K. Sen, E. Yeager, The kinetics of the oxygen reduction reaction on gold in
alkaline solution. J. Electrochem. Soc. 125, 1103–1109 (1978)
7. R.R. Adzic, J.X. Wang, Configuration and site of O2 adsorption on the Pt(111) electrode surface. J. Phys. Chem. 102, 8988–8993 (1998)
8. A. Damjanovic, in Modern Aspects of Electrochemistry, ed. by B. JOM, B. Conway, vol. 5,
(Plenum Press, New York, 1969)
9. J.O.M. Bockris, A.K.M.S. Huq, The mechanism of the electrolytic evolution of oxygen on
platinum. Proc. R. Soc. Lond. Ser. A 237, 277–296 (1956)
10. H.S. Wroblowa, Yen-Chi-Pan, G. Razumney, Electroreduction of oxygen: A new mechanistic
criterion. J. Electroanal. Chem. 69, 195–201 (1976)
11. N.A. Anastasijevic, V. Vesovic, R.R. Adzic, Determination of the kinetic parameters of
the oxygen reduction reaction using the rotating ring-disk electrode. Part I. Theory, Part
II. Applications. J. Electroanal. Chem. 229, 305–316, 229:317–325 (1987)
12. S.J. Clouser, J.C. Huang, E. Yeager, Temperature dependence of the Tafel slope for oxygen
reduction on platinum in concentrated phosphoric acid. J. Appl. Electrochem. 23, 597–605
(1993)
13. D.B. Sepa, M.V. Vojnovic, A. Damjanovic, Reaction intermediates as a controlling factor in
the kinetics and mechanisms of oxygen reduction at platinum electrodes. Electrochim. Acta
26, 781–793 (1981)
14. B. Grgur, N.M. Markovic, P.N. Ross Jr., Temperature-dependent oxygen electrochemistry on
platinum low-index single crystal surfaces in acid solutions. Can. J. Chem. 75, 1465–1471
(1997)
15. M.S. Wilson, J.A. Valerio, S. Gottesfeld, Low platinum loading electrodes for polymer electrolyte fuel cells fabricated using thermoplastic ionomers. Electrochim. Acta 40, 355–363 (1995)
16. M.H. Shao, K. Sasaki, R.R. Adzic, Pt-Fe nanoparticles as electrocatalysts for oxygen reduction. J. Am. Chem. Soc. 128, 3526–3527 (2006)
17. U.A. Paulus, A. Wokaun, G.G. Sherer, T.J. Schmidt, V. Stamenkovic, V. Radmilovic,
N.M. Markovic, P.N. Ross, Oxygen reduction on carbon-supported Pt-Ni and Pt-Co alloy
catalysts. J. Phys. Chem. B 106, 4181–4191 (2002)
18. V. Jalan, E.J. Tayler, Importance of interatomic spacing in catalytic reduction of oxygen in
phosphoric acid. J. Electrochem. Soc. 130, 2299–2302 (1983)
19. F.H.B. Lima, W.H. Lizcano-Valbuena, E. Teiheira-Neto, F.C. Nart, E.R. Gonzalez,
E.A. Ticianelli, Pt-Co/C nanoparticles as electrocatalysts for oxygen reduction in H2SO4 and
H2SO4/CH3OH electrolytes. Electrochim. Acta 52, 385–393 (2006)
20. B. Hammer, J.K. Norskov, Electronic factors determining the reactivity of metal surfaces. Surf.
Sci. 343, 211–220 (1995)
6 Important Electrocatalytic Reactions
References
1. M.R. Tarasevich, A. Sadkowski, E. Yeager, in Comprehensive Treatise of Electrochemistry, ed.
by B. Conway, J. O. Bockris, E. Yeager, S. U. M. Khan, R. E. M. White, vol. 7, (Plenum Press,
New York, 1983)
2. R. Adzic, Recent advances in the kinetics of oxygen reduction, in Electrocatalysis, ed. by
J. Lipkowski, P. N. Ross, (Wiley, New York, 1998)
3. G. Wu, K.L. More, C.M. Johnston, P. Zelenay, High-performance electrocatalysts for oxygen
reduction derived from polyaniline, iron, and cobalt. Science 332, 443–447 (2011)
4. E. Proietti, F. Jaouen, M. Lefèvre, N. Larouche, J. Tian, J. Herranz, J.-P. Dodelet, Iron-based
cathode catalyst with enhanced power density in polymer electrolyte membrane fuel cells. Nat.
Commun. 2, Article number: 416 (2011)
5. K.A. Kuttiyiel, Y.M. Choi, S.-M. Hwang, G.-G. Park, T.-H. Yang, D. Su, K. Sasaki, P. Liu,
R.R. Adzic, Enhancement of the oxygen reduction on nitride stabilized Pt-M (M= Fe, Co, and
Ni) core–shell nanoparticle electrocatalysts. Nano Energy 13, 442–449 (2015)
6. R.W. Zurilla, R.K. Sen, E. Yeager, The kinetics of the oxygen reduction reaction on gold in
alkaline solution. J. Electrochem. Soc. 125, 1103–1109 (1978)
7. R.R. Adzic, J.X. Wang, Configuration and site of O2 adsorption on the Pt(111) electrode surface. J. Phys. Chem. 102, 8988–8993 (1998)
8. A. Damjanovic, in Modern Aspects of Electrochemistry, ed. by B. JOM, B. Conway, vol. 5,
(Plenum Press, New York, 1969)
9. J.O.M. Bockris, A.K.M.S. Huq, The mechanism of the electrolytic evolution of oxygen on
platinum. Proc. R. Soc. Lond. Ser. A 237, 277–296 (1956)
10. H.S. Wroblowa, Yen-Chi-Pan, G. Razumney, Electroreduction of oxygen: A new mechanistic
criterion. J. Electroanal. Chem. 69, 195–201 (1976)
11. N.A. Anastasijevic, V. Vesovic, R.R. Adzic, Determination of the kinetic parameters of
the oxygen reduction reaction using the rotating ring-disk electrode. Part I. Theory, Part
II. Applications. J. Electroanal. Chem. 229, 305–316, 229:317–325 (1987)
12. S.J. Clouser, J.C. Huang, E. Yeager, Temperature dependence of the Tafel slope for oxygen
reduction on platinum in concentrated phosphoric acid. J. Appl. Electrochem. 23, 597–605
(1993)
13. D.B. Sepa, M.V. Vojnovic, A. Damjanovic, Reaction intermediates as a controlling factor in
the kinetics and mechanisms of oxygen reduction at platinum electrodes. Electrochim. Acta
26, 781–793 (1981)
14. B. Grgur, N.M. Markovic, P.N. Ross Jr., Temperature-dependent oxygen electrochemistry on
platinum low-index single crystal surfaces in acid solutions. Can. J. Chem. 75, 1465–1471
(1997)
15. M.S. Wilson, J.A. Valerio, S. Gottesfeld, Low platinum loading electrodes for polymer electrolyte fuel cells fabricated using thermoplastic ionomers. Electrochim. Acta 40, 355–363 (1995)
16. M.H. Shao, K. Sasaki, R.R. Adzic, Pt-Fe nanoparticles as electrocatalysts for oxygen reduction. J. Am. Chem. Soc. 128, 3526–3527 (2006)
17. U.A. Paulus, A. Wokaun, G.G. Sherer, T.J. Schmidt, V. Stamenkovic, V. Radmilovic,
N.M. Markovic, P.N. Ross, Oxygen reduction on carbon-supported Pt-Ni and Pt-Co alloy
catalysts. J. Phys. Chem. B 106, 4181–4191 (2002)
18. V. Jalan, E.J. Tayler, Importance of interatomic spacing in catalytic reduction of oxygen in
phosphoric acid. J. Electrochem. Soc. 130, 2299–2302 (1983)
19. F.H.B. Lima, W.H. Lizcano-Valbuena, E. Teiheira-Neto, F.C. Nart, E.R. Gonzalez,
E.A. Ticianelli, Pt-Co/C nanoparticles as electrocatalysts for oxygen reduction in H2SO4 and
H2SO4/CH3OH electrolytes. Electrochim. Acta 52, 385–393 (2006)
20. B. Hammer, J.K. Norskov, Electronic factors determining the reactivity of metal surfaces. Surf.
Sci. 343, 211–220 (1995)
6 Important Electrocatalytic Reactions
