Topics in Current Chemistry (2019) 377:5
1 3
24. Batista EA, Malpass GRP, Motheo AJ, Iwasita T (2004) New mechanistic aspects of methanol oxidation. J Electroanal Chem 571:273–282
25. Farias MJS, Mello GAB, Tanaka AA, Feliu JM (2017) Site-specific catalytic activity of model
platinum surfaces in different electrolytic environments as monitored by the CO oxidation reaction.
J Catal 345:216–227
26. Clavilier J, El Achi K, Rodes A (1990) In situ probing of step and terrace sites on Pt(S)[n(111) × (111)] electrodes. Chem Phys 141:1–14
27. Rodes A, El Achi K, Zamakhchari MA, Clavilier J (1990) Hydrogen probing of step and terrace
sites on Pt(S)-[n(111) × (100)]. J Electroanal Chem 284:245–253
28. Kunimatsu K, Senzaki T, Samjeské G, Tsushima M, Osawa M (2007) Hydrogen adsorption and
hydrogen evolution reaction on a polycrystalline Pt electrode studied by surface-enhanced infrared
absorption spectroscopy. Electrochim Acta 52:5715–5724
29. Paleček D, Tek G, Lan J, Iannuzzi M, Hamm P (2018) Characterization of the platinum–hydrogen
bond by surface-sensitive time-resolved infrared spectroscopy. J Phys Chem Lett 9:1254–1259
30. McCrum IT, Chen X, Schwarz KA, Janik MJ, Koper MTM (2018) Effect of step density and orientation on the apparent pH dependence of hydrogen and hydroxide adsorption on stepped platinum
surfaces. J Phys Chem C 122:16756–16764
31. Smoluchowski R (1941) Anisotropy of the electronic work function of metals. Phys Rev
60:661–674
32. Climent V, Feliu JM (2011) Thirty years of platinum single crystal electrochemistry. J Solid State
Electrochem 15:1297–1315
33. Gómez-Marín AM, Clavilier J, Feliu JM (2013) Sequential Pt(111) oxide formation in perchloric acid: an electrochemical study of surface species inter-conversion. J Electroanal Chem
688:360–370
34. Huang YF, Kooyman PJ, Koper MTM (2016) Intermediate stages of electrochemical oxidation of
single-crystalline platinum revealed by in situ Raman spectroscopy. Nat Commun 7:12440
35. Freund HJ, Meijer G, Scheffler M, Schlögl R, Wolf M (2011) CO oxidation as a prototypical reaction for heterogeneous processes. Angew Chem Int Ed 50:10064–10094
36. van Spronsen MA, Frenken JWM, Groot IMN (2017) Surface science under reaction conditions:
CO oxidation on Pt and Pd model catalysts. Chem Soc Rev 46:4347–4374
37. Beden B, Lamy C, de Tacconi NR, Arvia AJ (1990) The electrooxidation of CO: a test reaction in
electrocatalysis. Electrochim Acta 35:691–704
38. Marković NM, Ross PN (2002) Surface science studies of model fuel cell electrocatalysts. Surf Sci
Rep 45:117–229
39. Chen QS, Solla-Gullón J, Sun SG, Feliu JM (2010) The potential of zero total charge of Pt nanoparticles and polycrystalline electrodes with different surface structure: the role of anion adsorption
in fundamental electrocatalysis. Electrochim Acta 55:7982–7994
40. Garrick TR, Moylan TE, Carpenter MK, Kongkanand A (2017) Electrochemically active surface
area measurement of aged Pt alloy catalysts in PEM fuel cells by CO stripping. J Electrochem Soc
164:F55–F59
41. Moniri S, van Cleve T, Linic S (2017) Pitfalls and best practices in measurements of the electrochemical surface area of platinum-based nanostructured electro-catalysts. J Catal 345:1–10
42. Ye JY, Jiang YX, Sheng T, Sun SG (2016) In-situ FTIR spectroscopic studies of electrocatalytic
reactions and processes. Nano Energy 29:414–427
43. Lebedeva NP, Koper MTM, Herrero E, Feliu JM, van Santen RA (2000) Cooxidation on stepped
Pt[n(111) × (111)] electrodes. J Electroanal Chem 487:37–44
44. Farias MJS, Cheuquepán W, Tanaka AA, Feliu JM (2018) Requirement of initial long-range
substrate structure in unusual CO pre-oxidation on Pt(111) electrodes. Electrochem Commun
97:60–63
45. Gilman S (1964) The mechanism of electrochemical oxidation of carbon monoxide and methanol
on platinum. The “Reactant-Pair” mechanism for electrochemical oxidation of carbon monoxide
and methanol. J Phys Chem 68:70–80
46. Angelucci CA, Nart FC, Herrero E, Feliu JM (2007) Anion re-adsorption and displacement at platinum single crystal electrodes in CO-containing solutions. Electrochem Commun 9:1113–1119
47. Ueno T, Tanaka H, Sugawara S, Shinohara K, Ohma A, Hoshi N, Nakamura M (2017) Infrared
spectroscopy of adsorbed OH on n(111)-(100) and n(111)-(111) series of Pt electrode. J Electroanal Chem 800:162–166
Reprinted from the journal
100
1 3
24. Batista EA, Malpass GRP, Motheo AJ, Iwasita T (2004) New mechanistic aspects of methanol oxidation. J Electroanal Chem 571:273–282
25. Farias MJS, Mello GAB, Tanaka AA, Feliu JM (2017) Site-specific catalytic activity of model
platinum surfaces in different electrolytic environments as monitored by the CO oxidation reaction.
J Catal 345:216–227
26. Clavilier J, El Achi K, Rodes A (1990) In situ probing of step and terrace sites on Pt(S)[n(111) × (111)] electrodes. Chem Phys 141:1–14
27. Rodes A, El Achi K, Zamakhchari MA, Clavilier J (1990) Hydrogen probing of step and terrace
sites on Pt(S)-[n(111) × (100)]. J Electroanal Chem 284:245–253
28. Kunimatsu K, Senzaki T, Samjeské G, Tsushima M, Osawa M (2007) Hydrogen adsorption and
hydrogen evolution reaction on a polycrystalline Pt electrode studied by surface-enhanced infrared
absorption spectroscopy. Electrochim Acta 52:5715–5724
29. Paleček D, Tek G, Lan J, Iannuzzi M, Hamm P (2018) Characterization of the platinum–hydrogen
bond by surface-sensitive time-resolved infrared spectroscopy. J Phys Chem Lett 9:1254–1259
30. McCrum IT, Chen X, Schwarz KA, Janik MJ, Koper MTM (2018) Effect of step density and orientation on the apparent pH dependence of hydrogen and hydroxide adsorption on stepped platinum
surfaces. J Phys Chem C 122:16756–16764
31. Smoluchowski R (1941) Anisotropy of the electronic work function of metals. Phys Rev
60:661–674
32. Climent V, Feliu JM (2011) Thirty years of platinum single crystal electrochemistry. J Solid State
Electrochem 15:1297–1315
33. Gómez-Marín AM, Clavilier J, Feliu JM (2013) Sequential Pt(111) oxide formation in perchloric acid: an electrochemical study of surface species inter-conversion. J Electroanal Chem
688:360–370
34. Huang YF, Kooyman PJ, Koper MTM (2016) Intermediate stages of electrochemical oxidation of
single-crystalline platinum revealed by in situ Raman spectroscopy. Nat Commun 7:12440
35. Freund HJ, Meijer G, Scheffler M, Schlögl R, Wolf M (2011) CO oxidation as a prototypical reaction for heterogeneous processes. Angew Chem Int Ed 50:10064–10094
36. van Spronsen MA, Frenken JWM, Groot IMN (2017) Surface science under reaction conditions:
CO oxidation on Pt and Pd model catalysts. Chem Soc Rev 46:4347–4374
37. Beden B, Lamy C, de Tacconi NR, Arvia AJ (1990) The electrooxidation of CO: a test reaction in
electrocatalysis. Electrochim Acta 35:691–704
38. Marković NM, Ross PN (2002) Surface science studies of model fuel cell electrocatalysts. Surf Sci
Rep 45:117–229
39. Chen QS, Solla-Gullón J, Sun SG, Feliu JM (2010) The potential of zero total charge of Pt nanoparticles and polycrystalline electrodes with different surface structure: the role of anion adsorption
in fundamental electrocatalysis. Electrochim Acta 55:7982–7994
40. Garrick TR, Moylan TE, Carpenter MK, Kongkanand A (2017) Electrochemically active surface
area measurement of aged Pt alloy catalysts in PEM fuel cells by CO stripping. J Electrochem Soc
164:F55–F59
41. Moniri S, van Cleve T, Linic S (2017) Pitfalls and best practices in measurements of the electrochemical surface area of platinum-based nanostructured electro-catalysts. J Catal 345:1–10
42. Ye JY, Jiang YX, Sheng T, Sun SG (2016) In-situ FTIR spectroscopic studies of electrocatalytic
reactions and processes. Nano Energy 29:414–427
43. Lebedeva NP, Koper MTM, Herrero E, Feliu JM, van Santen RA (2000) Cooxidation on stepped
Pt[n(111) × (111)] electrodes. J Electroanal Chem 487:37–44
44. Farias MJS, Cheuquepán W, Tanaka AA, Feliu JM (2018) Requirement of initial long-range
substrate structure in unusual CO pre-oxidation on Pt(111) electrodes. Electrochem Commun
97:60–63
45. Gilman S (1964) The mechanism of electrochemical oxidation of carbon monoxide and methanol
on platinum. The “Reactant-Pair” mechanism for electrochemical oxidation of carbon monoxide
and methanol. J Phys Chem 68:70–80
46. Angelucci CA, Nart FC, Herrero E, Feliu JM (2007) Anion re-adsorption and displacement at platinum single crystal electrodes in CO-containing solutions. Electrochem Commun 9:1113–1119
47. Ueno T, Tanaka H, Sugawara S, Shinohara K, Ohma A, Hoshi N, Nakamura M (2017) Infrared
spectroscopy of adsorbed OH on n(111)-(100) and n(111)-(111) series of Pt electrode. J Electroanal Chem 800:162–166
Reprinted from the journal
100
