Topics in Current Chemistry (2019) 377:5
1 3
73. Angel C (2011) Atomic ensemble effects in electrocatalysis: the site-knockout strategy. ChemPhysChem 12:2375–2385
74. Cuesta A, Escudero M, Lanova B, Baltruschat H (2009) Cyclic voltammetry, FTIRS, and DEMS
study of the electrooxidation of carbon monoxide, formic acid, and methanol on cyanide-modified
Pt(111) electrodes. Langmuir 25:6500–6507
75. Valentini F, Biagiotti V, Lete C, Palleschi G, Wang J (2007) The electrochemical detection of
ammonia in drinking water based on multi-walled carbon nanotube/copper nanoparticle composite
paste electrodes. Sens Actuators B Chem 128:326–333
76. Simons EL, Cairns EJ, Surd DJ (1969) The performance of direct ammonia fuel cells. J Electrochem Soc 116:556–561
77. Acevedo R, Poventud-Estrada CM, Morales-Navas C, Martínez-Rodríguez RA, Ortiz-Quiles E,
Vidal-Iglesias FJ, Sollá-Gullón J, Nicolau E, Feliu JM, Echegoyen L et al (2017) Chronoamperometric study of ammonia oxidation in a direct ammonia alkaline fuel cell under the influence of
microgravity. Microgravity Sci Technol 29:253–261
78. Gerischer H, Mauerer A (1970) Untersuchungen zur anodischen oxidation von ammoniak an
platin-elektroden. J Electroanal Chem 25:421–433
79. Wasmus S, Vasini EJ, Krausa M, Mishima HT, Vielstich W (1994) DEMS-cyclic voltammetry
investigation of the electrochemistry of nitrogen compounds in 0.5 M potassium hydroxide. Electrochim Acta 39:23–31
80. Katsounaros I, Figueiredo MC, Calle-Vallejo F, Li H, Gewirth AA, Markovic NM, Koper MTM
(2018) On the mechanism of the electrochemical conversion of ammonia to dinitrogen on Pt(1 0 0)
in alkaline environment. J Catal 359:82–91
81. Matsui T, Suzuki S, Katayama Y, Yamauchi K, Okanishi T, Muroyama H, Eguchi K (2015) In situ
attenuated total reflection infrared spectroscopy on electrochemical ammonia oxidation over Pt
electrode in alkaline aqueous solutions. Langmuir 31:11717–11723
82. Vidal-Iglesias FJ, Garcı́ a-Aráez N, Montiel V, Feliu JM, Aldaz A (2003) Selective electrocatalysis
of ammonia oxidation on Pt(100) sites in alkaline medium. Electrochem Commun 5:22–26
83. Vidal-Iglesias FJ, Solla-Gullón J, Montiel V, Feliu JM, Aldaz A (2005) Ammonia selective oxidation on Pt(100) sites in an alkaline medium. J Phys Chem B 109:12914–12919
84. Vidal-Iglesias FJ, Solla-Gullón J, Feliu JM, Baltruschat H, Aldaz A (2006) DEMS study of ammonia oxidation on platinum basal planes. J Electroanal Chem 588:331–338
85. Martı́ nez-Rodrı́ guez RA, Vidal-Iglesias FJ, Solla-Gullón J, Cabrera CR, Feliu JM (2014) Synthesis
of Pt nanoparticles in water-in-oil microemulsion: effect of HCl on their surface structure. J Am
Chem Soc 136:1280–1283
86. Duca M, Figueiredo MC, Climent V, Rodriguez P, Feliu JM, Koper MTM (2011) Selective catalytic reduction at quasi-perfect Pt(100) domains: a universal low-temperature pathway from nitrite
to N 2 . J Am Chem Soc 133:10928–10939
87. Finkelstein DA, Bertin E, Garbarino S, Guay D (2015) Mechanistic similarity in catalytic N 2 production from NH 3 and NO 2 —at Pt(100) thin films: toward a universal catalytic pathway for simple N-containing species, and its application to in situ removal of NH 3 poisons. J Phys Chem C
119:9860–9878
88. Mallat T, Orglmeister E, Baiker A (2007) Asymmetric catalysis at chiral metal surfaces. Chem Rev
107:4863–4890
89. Zaera F (2017) Chirality in adsorption on solid surfaces. Chem Soc Rev 46:7374–7398
90. Attard GA (2001) Electrochemical studies of enantioselectivity at chiral metal surfaces. J Phys
Chem B 105:3158–3167
91. Climent V, Feliu JM (2017) Surface electrochemistry with Pt single-crystal electrodes. Advances
in electrochemical science and engineering. Wiley, New York, pp 1–57
92. Sholl DS, Asthagiri A, Power TD (2001) Naturally chiral metal surfaces as enantiospecific adsorbents. J Phys Chem B 105:4771–4782
93. Attard GA, Clavilier J, Feliu JM (2002) Chirality at well-defined metal surfaces. Chirality: physical
chemistry. American Chemical Society, Washington, pp 254–268
94. Wattanakit C, Côme YBS, Lapeyre V, Bopp PA, Heim M, Yadnum S, Nokbin S, Warakulwit C,
Limtrakul J, Kuhn A (2014) Enantioselective recognition at mesoporous chiral metal surfaces. Nat
Commun 5:3325
95. Yutthalekha T, Wattanakit C, Lapeyre V, Nokbin S, Warakulwit C, Limtrakul J, Kuhn A (2016)
Asymmetric synthesis using chiral-encoded metal. Nat Commun 7:12678
Reprinted from the journal
102
1 3
73. Angel C (2011) Atomic ensemble effects in electrocatalysis: the site-knockout strategy. ChemPhysChem 12:2375–2385
74. Cuesta A, Escudero M, Lanova B, Baltruschat H (2009) Cyclic voltammetry, FTIRS, and DEMS
study of the electrooxidation of carbon monoxide, formic acid, and methanol on cyanide-modified
Pt(111) electrodes. Langmuir 25:6500–6507
75. Valentini F, Biagiotti V, Lete C, Palleschi G, Wang J (2007) The electrochemical detection of
ammonia in drinking water based on multi-walled carbon nanotube/copper nanoparticle composite
paste electrodes. Sens Actuators B Chem 128:326–333
76. Simons EL, Cairns EJ, Surd DJ (1969) The performance of direct ammonia fuel cells. J Electrochem Soc 116:556–561
77. Acevedo R, Poventud-Estrada CM, Morales-Navas C, Martínez-Rodríguez RA, Ortiz-Quiles E,
Vidal-Iglesias FJ, Sollá-Gullón J, Nicolau E, Feliu JM, Echegoyen L et al (2017) Chronoamperometric study of ammonia oxidation in a direct ammonia alkaline fuel cell under the influence of
microgravity. Microgravity Sci Technol 29:253–261
78. Gerischer H, Mauerer A (1970) Untersuchungen zur anodischen oxidation von ammoniak an
platin-elektroden. J Electroanal Chem 25:421–433
79. Wasmus S, Vasini EJ, Krausa M, Mishima HT, Vielstich W (1994) DEMS-cyclic voltammetry
investigation of the electrochemistry of nitrogen compounds in 0.5 M potassium hydroxide. Electrochim Acta 39:23–31
80. Katsounaros I, Figueiredo MC, Calle-Vallejo F, Li H, Gewirth AA, Markovic NM, Koper MTM
(2018) On the mechanism of the electrochemical conversion of ammonia to dinitrogen on Pt(1 0 0)
in alkaline environment. J Catal 359:82–91
81. Matsui T, Suzuki S, Katayama Y, Yamauchi K, Okanishi T, Muroyama H, Eguchi K (2015) In situ
attenuated total reflection infrared spectroscopy on electrochemical ammonia oxidation over Pt
electrode in alkaline aqueous solutions. Langmuir 31:11717–11723
82. Vidal-Iglesias FJ, Garcı́ a-Aráez N, Montiel V, Feliu JM, Aldaz A (2003) Selective electrocatalysis
of ammonia oxidation on Pt(100) sites in alkaline medium. Electrochem Commun 5:22–26
83. Vidal-Iglesias FJ, Solla-Gullón J, Montiel V, Feliu JM, Aldaz A (2005) Ammonia selective oxidation on Pt(100) sites in an alkaline medium. J Phys Chem B 109:12914–12919
84. Vidal-Iglesias FJ, Solla-Gullón J, Feliu JM, Baltruschat H, Aldaz A (2006) DEMS study of ammonia oxidation on platinum basal planes. J Electroanal Chem 588:331–338
85. Martı́ nez-Rodrı́ guez RA, Vidal-Iglesias FJ, Solla-Gullón J, Cabrera CR, Feliu JM (2014) Synthesis
of Pt nanoparticles in water-in-oil microemulsion: effect of HCl on their surface structure. J Am
Chem Soc 136:1280–1283
86. Duca M, Figueiredo MC, Climent V, Rodriguez P, Feliu JM, Koper MTM (2011) Selective catalytic reduction at quasi-perfect Pt(100) domains: a universal low-temperature pathway from nitrite
to N 2 . J Am Chem Soc 133:10928–10939
87. Finkelstein DA, Bertin E, Garbarino S, Guay D (2015) Mechanistic similarity in catalytic N 2 production from NH 3 and NO 2 —at Pt(100) thin films: toward a universal catalytic pathway for simple N-containing species, and its application to in situ removal of NH 3 poisons. J Phys Chem C
119:9860–9878
88. Mallat T, Orglmeister E, Baiker A (2007) Asymmetric catalysis at chiral metal surfaces. Chem Rev
107:4863–4890
89. Zaera F (2017) Chirality in adsorption on solid surfaces. Chem Soc Rev 46:7374–7398
90. Attard GA (2001) Electrochemical studies of enantioselectivity at chiral metal surfaces. J Phys
Chem B 105:3158–3167
91. Climent V, Feliu JM (2017) Surface electrochemistry with Pt single-crystal electrodes. Advances
in electrochemical science and engineering. Wiley, New York, pp 1–57
92. Sholl DS, Asthagiri A, Power TD (2001) Naturally chiral metal surfaces as enantiospecific adsorbents. J Phys Chem B 105:4771–4782
93. Attard GA, Clavilier J, Feliu JM (2002) Chirality at well-defined metal surfaces. Chirality: physical
chemistry. American Chemical Society, Washington, pp 254–268
94. Wattanakit C, Côme YBS, Lapeyre V, Bopp PA, Heim M, Yadnum S, Nokbin S, Warakulwit C,
Limtrakul J, Kuhn A (2014) Enantioselective recognition at mesoporous chiral metal surfaces. Nat
Commun 5:3325
95. Yutthalekha T, Wattanakit C, Lapeyre V, Nokbin S, Warakulwit C, Limtrakul J, Kuhn A (2016)
Asymmetric synthesis using chiral-encoded metal. Nat Commun 7:12678
Reprinted from the journal
102
