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Erschienen in: Topics in Catalysis 15-16/2017

13.04.2017 | Original Paper

Comparison of the Activity of Pd–M (M: Ag, Co, Cu, Fe, Ni, Zn) Bimetallic Electrocatalysts for Oxygen Reduction Reaction

verfasst von: Georgios Bampos, Symeon Bebelis, Dimitris I. Kondarides, Xenophon Verykios

Erschienen in: Topics in Catalysis | Ausgabe 15-16/2017

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Abstract

Carbon-supported 7.5 wt% Pd–2.5 wt% M (M: Ag, Co, Cu, Fe, Ni, Zn) bimetallic catalysts were synthesized via wet impregnation and assessed as electrocatalysts for the oxygen reduction reaction (ORR) in acidic solution at room temperature, using the thin-film rotating disk electrode technique. Monometallic 10 wt% Pt/C and 10 wt% Pd/C catalysts, prepared via the same method, were used as reference materials. The highest activity for ORR among the tested electrocatalysts was exhibited by PdZn/C and the lowest by Pd/C and PdCu/C. The activity of the rest Pd-based electrocatalysts followed the descending order: PdNi/C > PdAg/C ≥ PdCo/C > PdFe/C. The specific activity of PdZn/C was higher than that of Pt/C (more than 3 times higher for potentials 0.35–0.5 V versus Ag/AgCl), whereas their mass activities were similar. PdNi/C and PdAg/C also exhibited higher specific activity than Pt/C for potentials lower than ca. 0.4 V versus Ag/AgCl, but their mass activity was lower. The high ORR activity of PdZn/C, which renders it a promising alternative to Pt-based cathodic electrocatalysts in PEMFCs, was associated with the presence of Pd–Zn alloy in the active phase, as revealed via XRD and TEM.

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Literatur
1.
Zurück zum Zitat Larminie J, Dicks A (2003) Fuel cell systems explained, 2nd edn. Wiley, ChichesterCrossRef Larminie J, Dicks A (2003) Fuel cell systems explained, 2nd edn. Wiley, ChichesterCrossRef
2.
Zurück zum Zitat Antolini E (2009) Palladium in fuel cell catalysis. Energy Environ Sci 2:915–931CrossRef Antolini E (2009) Palladium in fuel cell catalysis. Energy Environ Sci 2:915–931CrossRef
3.
Zurück zum Zitat Zhang L, Chang Q, Chen H, Shao M (2016) Recent advances in palladium-based electrocatalysts for fuel cell reactions and hydrogen evolution reaction. Nano Energy 29:198–219CrossRef Zhang L, Chang Q, Chen H, Shao M (2016) Recent advances in palladium-based electrocatalysts for fuel cell reactions and hydrogen evolution reaction. Nano Energy 29:198–219CrossRef
4.
Zurück zum Zitat Chen A, Ostrom C (2015) Palladium-based nanomaterials: synthesis and electrochemical applications. Chem Rev 115:11999–12044CrossRef Chen A, Ostrom C (2015) Palladium-based nanomaterials: synthesis and electrochemical applications. Chem Rev 115:11999–12044CrossRef
5.
Zurück zum Zitat Savadogo O, Lee K, Oishi K, Mitsushima S, Kamiya N, Ota KI (2004) New palladium alloys catalyst for the oxygen reduction reaction in an acid medium. Electrochem Commun 6:105–109CrossRef Savadogo O, Lee K, Oishi K, Mitsushima S, Kamiya N, Ota KI (2004) New palladium alloys catalyst for the oxygen reduction reaction in an acid medium. Electrochem Commun 6:105–109CrossRef
6.
Zurück zum Zitat Brouzgou A, Song SQ, Tsiakaras P (2012) Low and non-platinum electrocatalysts for PEMFCs: current status, challenges and prospects. Appl Catal B 127:371–388CrossRef Brouzgou A, Song SQ, Tsiakaras P (2012) Low and non-platinum electrocatalysts for PEMFCs: current status, challenges and prospects. Appl Catal B 127:371–388CrossRef
7.
Zurück zum Zitat Lv H, Li D, Strmcnik D, Paulikas AP, Markovic NM, Stamenkovic VR (2016) Recent advances in the design of tailored nanomaterials for efficient oxygen reduction reaction. Nano Energy 29:149–165CrossRef Lv H, Li D, Strmcnik D, Paulikas AP, Markovic NM, Stamenkovic VR (2016) Recent advances in the design of tailored nanomaterials for efficient oxygen reduction reaction. Nano Energy 29:149–165CrossRef
8.
Zurück zum Zitat Shao M (2011) Palladium-based electrocatalysts for hydrogen oxidation and oxygen reduction reactions. J Power Sources 196:2433–2444CrossRef Shao M (2011) Palladium-based electrocatalysts for hydrogen oxidation and oxygen reduction reactions. J Power Sources 196:2433–2444CrossRef
9.
Zurück zum Zitat Wang YJ, Zhao N, Fang B, Li H, Bi XT, Wang H (2015) Carbon-supported Pt-based alloy electrocatalysts for the oxygen reduction reaction in polymer electrolyte membrane fuel cells: particle size, shape, and composition manipulation and their impact to activity. Chem Rev 115:3433–3467CrossRef Wang YJ, Zhao N, Fang B, Li H, Bi XT, Wang H (2015) Carbon-supported Pt-based alloy electrocatalysts for the oxygen reduction reaction in polymer electrolyte membrane fuel cells: particle size, shape, and composition manipulation and their impact to activity. Chem Rev 115:3433–3467CrossRef
10.
Zurück zum Zitat Bing Y, Liu H, Zhang L, Ghosh D, Zhang J (2010) Nanostructured Pt-alloy electrocatalysts for PEM fuel cell oxygen reduction reaction. Chem Soc Rev 39:2184–2202CrossRef Bing Y, Liu H, Zhang L, Ghosh D, Zhang J (2010) Nanostructured Pt-alloy electrocatalysts for PEM fuel cell oxygen reduction reaction. Chem Soc Rev 39:2184–2202CrossRef
11.
Zurück zum Zitat Gasteiger HA, Kocha SS, Sompalli B, Wagner FT (2005) Activity benchmarks and requirements for Pt, Pt-alloy, and non-Pt oxygen reduction catalysts for PEMFCs. Appl Catal B 56:9–35CrossRef Gasteiger HA, Kocha SS, Sompalli B, Wagner FT (2005) Activity benchmarks and requirements for Pt, Pt-alloy, and non-Pt oxygen reduction catalysts for PEMFCs. Appl Catal B 56:9–35CrossRef
12.
Zurück zum Zitat Markovic NM, Schmidt TJ, Stamenkovic V, Ross PN (2001) Oxygen reduction reaction on Pt and Pt bimetallic surfaces: a selective review. Fuel Cells 1:105–116CrossRef Markovic NM, Schmidt TJ, Stamenkovic V, Ross PN (2001) Oxygen reduction reaction on Pt and Pt bimetallic surfaces: a selective review. Fuel Cells 1:105–116CrossRef
13.
Zurück zum Zitat Greeley J, Stephens IEL, Bondarenko AS, Johansson TP, Hansen HA, Jaramillo TF, Rossmeisl J, Chorkendorff I, Nørskov JK (2009) Alloys of platinum and early transition metals as oxygen reduction electrocatalysts. Nat Chem 1:552–556CrossRef Greeley J, Stephens IEL, Bondarenko AS, Johansson TP, Hansen HA, Jaramillo TF, Rossmeisl J, Chorkendorff I, Nørskov JK (2009) Alloys of platinum and early transition metals as oxygen reduction electrocatalysts. Nat Chem 1:552–556CrossRef
14.
Zurück zum Zitat Nørskov JK, Rossmeisl J, Logadottir A, Lindqvist L, Kitchin JR, Bligaard T, Jónsson H (2004) Origin of the overpotential for oxygen reduction at a fuel-cell cathode. J Phys Chem B 108:17886–17892CrossRef Nørskov JK, Rossmeisl J, Logadottir A, Lindqvist L, Kitchin JR, Bligaard T, Jónsson H (2004) Origin of the overpotential for oxygen reduction at a fuel-cell cathode. J Phys Chem B 108:17886–17892CrossRef
15.
Zurück zum Zitat Mavrikakis M, Hammer B, Nørskov JK (1998) Effect of strain on the reactivity of metal surfaces. Phys Rev Lett 81:2819–2822CrossRef Mavrikakis M, Hammer B, Nørskov JK (1998) Effect of strain on the reactivity of metal surfaces. Phys Rev Lett 81:2819–2822CrossRef
16.
Zurück zum Zitat Liu P, Nørskov JK (2001) Ligand and ensemble effects in adsorption on alloy surfaces. Phys Chem Chem Phys 3:3814–3818CrossRef Liu P, Nørskov JK (2001) Ligand and ensemble effects in adsorption on alloy surfaces. Phys Chem Chem Phys 3:3814–3818CrossRef
17.
Zurück zum Zitat Mayrhofer KJJ, Strmcnik D, Blizanac BB, Stamenkovic V, Arenz M, Markovic NM (2008) Measurement of oxygen reduction activities via the rotating disc electrode method: from Pt model surfaces to carbon-supported high surface area catalysts. Electrochim Acta 53:3181–3188CrossRef Mayrhofer KJJ, Strmcnik D, Blizanac BB, Stamenkovic V, Arenz M, Markovic NM (2008) Measurement of oxygen reduction activities via the rotating disc electrode method: from Pt model surfaces to carbon-supported high surface area catalysts. Electrochim Acta 53:3181–3188CrossRef
18.
Zurück zum Zitat Panagiotopoulou P (2004) Effect of morphological characteristics of TiO2-supported noble metal catalysts on their activity for the water-gas shift reaction. J Catal 225:327–336CrossRef Panagiotopoulou P (2004) Effect of morphological characteristics of TiO2-supported noble metal catalysts on their activity for the water-gas shift reaction. J Catal 225:327–336CrossRef
19.
Zurück zum Zitat Lewis FA (1990) Solubility of hydrogen in metals. Pure Appl Chem 62:2091–2096CrossRef Lewis FA (1990) Solubility of hydrogen in metals. Pure Appl Chem 62:2091–2096CrossRef
20.
Zurück zum Zitat Van der Vliet D, Wang C, Debe M, Atanasoski R, Markovic NM, Stamenkovic VR (2011) Platinum-alloy nanostructured thin film catalysts for the oxygen reduction reaction. Electrochim Acta 56:8695–8699CrossRef Van der Vliet D, Wang C, Debe M, Atanasoski R, Markovic NM, Stamenkovic VR (2011) Platinum-alloy nanostructured thin film catalysts for the oxygen reduction reaction. Electrochim Acta 56:8695–8699CrossRef
21.
Zurück zum Zitat Xiong L, Manthiram A (2005) Nanostructured Pt–M/C (M=Fe and Co) catalysts prepared by a microemulsion method for oxygen reduction in proton exchange membrane fuel cells. Electrochim Acta 50:2323–2329CrossRef Xiong L, Manthiram A (2005) Nanostructured Pt–M/C (M=Fe and Co) catalysts prepared by a microemulsion method for oxygen reduction in proton exchange membrane fuel cells. Electrochim Acta 50:2323–2329CrossRef
22.
Zurück zum Zitat Łukaszewski M, Soszko M, Czerwiński A (2016) Electrochemical methods of real surface area determination of noble metal electrodes—an overview. Int J Electrochem Sci 11:4442–4469CrossRef Łukaszewski M, Soszko M, Czerwiński A (2016) Electrochemical methods of real surface area determination of noble metal electrodes—an overview. Int J Electrochem Sci 11:4442–4469CrossRef
23.
Zurück zum Zitat Pozio A, De Francesco M, Cemmi A, Cardellini F, Giorgi L (2002) Comparison of high surface Pt/C catalysts by cyclic voltammetry. J Power Sources 105:13–19CrossRef Pozio A, De Francesco M, Cemmi A, Cardellini F, Giorgi L (2002) Comparison of high surface Pt/C catalysts by cyclic voltammetry. J Power Sources 105:13–19CrossRef
24.
Zurück zum Zitat Correia AN, Mascara LH, Machado SAS, Avaca LA (1997) Active surface area determination of Pd–Si alloys by H-adsorption. Electrochim Acta 42:493–495CrossRef Correia AN, Mascara LH, Machado SAS, Avaca LA (1997) Active surface area determination of Pd–Si alloys by H-adsorption. Electrochim Acta 42:493–495CrossRef
25.
Zurück zum Zitat Gileadi E (2011) Physical Electrochemistry: Fundamentals, techniques and applications. Wiley, Weinheim Gileadi E (2011) Physical Electrochemistry: Fundamentals, techniques and applications. Wiley, Weinheim
26.
Zurück zum Zitat Gojković SL, Gupta S, Savinell RF (1999) Heat-treated iron(III) tetramethoxyphenyl porphyrin chloride supported on high-area carbon as an electrocatalyst for oxygen reduction Part II. Kinetics of oxygen reduction. J Electroanal Chem 462:63–72CrossRef Gojković SL, Gupta S, Savinell RF (1999) Heat-treated iron(III) tetramethoxyphenyl porphyrin chloride supported on high-area carbon as an electrocatalyst for oxygen reduction Part II. Kinetics of oxygen reduction. J Electroanal Chem 462:63–72CrossRef
27.
Zurück zum Zitat Lawson DR, Whiteley LD, Martin CR (1988) Oxygen reduction at Nafion film-coated platinum electrodes: transport and kinetics. J Electrochem Soc 135:2247–2253CrossRef Lawson DR, Whiteley LD, Martin CR (1988) Oxygen reduction at Nafion film-coated platinum electrodes: transport and kinetics. J Electrochem Soc 135:2247–2253CrossRef
28.
Zurück zum Zitat Watanabe M, Igarashi H, Yosioka K (1995) An experimental prediction of the preparation condition of Nafion-coated catalyst layers for PEFCs. Electrochim Acta 40:329–334CrossRef Watanabe M, Igarashi H, Yosioka K (1995) An experimental prediction of the preparation condition of Nafion-coated catalyst layers for PEFCs. Electrochim Acta 40:329–334CrossRef
29.
Zurück zum Zitat Arenz M, Markovic NM (2010) Half-cell investigations of cathode catalysts for PEM fuel cells: from model systems to high-surface-area catalysts. In: Wieckowski A, Norskov JK (eds) Fuel cell science: theory, fundamentals, and biocatalysis. Wiley, Hoboken, pp 284–316 Arenz M, Markovic NM (2010) Half-cell investigations of cathode catalysts for PEM fuel cells: from model systems to high-surface-area catalysts. In: Wieckowski A, Norskov JK (eds) Fuel cell science: theory, fundamentals, and biocatalysis. Wiley, Hoboken, pp 284–316
30.
Zurück zum Zitat Sun Y, Hsieh Y-C, Chang L-C, Wu P-W, Lee J-F (2015) Synthesis of Pd9Ru@Pt nanoparticles for oxygen reduction reaction in acidic electrolytes. J Power Sources 277:116–123CrossRef Sun Y, Hsieh Y-C, Chang L-C, Wu P-W, Lee J-F (2015) Synthesis of Pd9Ru@Pt nanoparticles for oxygen reduction reaction in acidic electrolytes. J Power Sources 277:116–123CrossRef
31.
Zurück zum Zitat Tzorbatzoglou F, Brouzgou A, Tsiakaras P (2015) Electrocatalytic activity of Vulcan-XC-72 supported Pd, Rh and PdxRhy toward HOR and ORR. Appl Catal B 174–175:203–211CrossRef Tzorbatzoglou F, Brouzgou A, Tsiakaras P (2015) Electrocatalytic activity of Vulcan-XC-72 supported Pd, Rh and PdxRhy toward HOR and ORR. Appl Catal B 174–175:203–211CrossRef
32.
Zurück zum Zitat Neergat M, Gunasekar V, Rahul R (2011) Carbon-supported Pd–Fe electrocatalysts for oxygen reduction reaction (ORR) and their methanol tolerance. J Electroanal Chem 658:25–32CrossRef Neergat M, Gunasekar V, Rahul R (2011) Carbon-supported Pd–Fe electrocatalysts for oxygen reduction reaction (ORR) and their methanol tolerance. J Electroanal Chem 658:25–32CrossRef
33.
Zurück zum Zitat Tarasevich MR, Zhutaeva GV, Bogdanovskaya VA, Radina MV, Ehrenburg MR, Chalykh AE (2007) Oxygen kinetics and mechanism at electrocatalysts on the base of palladium–iron system. Electrochim Acta 52:5108–5118CrossRef Tarasevich MR, Zhutaeva GV, Bogdanovskaya VA, Radina MV, Ehrenburg MR, Chalykh AE (2007) Oxygen kinetics and mechanism at electrocatalysts on the base of palladium–iron system. Electrochim Acta 52:5108–5118CrossRef
34.
Zurück zum Zitat Song C, Zhang J (2008) Electrocatalytic oxygen reduction reaction. In: Zhang J (ed) PEM fuel cell electrocatalysts and catalyst layers. Springer, London Song C, Zhang J (2008) Electrocatalytic oxygen reduction reaction. In: Zhang J (ed) PEM fuel cell electrocatalysts and catalyst layers. Springer, London
35.
Zurück zum Zitat Sepa DB, Vojnovic MV, Damjanovic A (1981) Reaction intermediates as a controlling factor in the kinetics and mechanism of oxygen reduction at platinum electrodes. Electrochim Acta 26:781–793CrossRef Sepa DB, Vojnovic MV, Damjanovic A (1981) Reaction intermediates as a controlling factor in the kinetics and mechanism of oxygen reduction at platinum electrodes. Electrochim Acta 26:781–793CrossRef
36.
Zurück zum Zitat Ramos-Sánchez G, Yee-Madeira H, Solorza-Feria O (2008) PdNi electrocatalyst for oxygen reduction in acid media. Int J Hydrogen Energy 33:3596–3600CrossRef Ramos-Sánchez G, Yee-Madeira H, Solorza-Feria O (2008) PdNi electrocatalyst for oxygen reduction in acid media. Int J Hydrogen Energy 33:3596–3600CrossRef
37.
Zurück zum Zitat Lee K, Savadogo O, Ishihara A, Mitsushima S, Kamiya N, Ota K-i (2006) Methanol-tolerant oxygen reduction electrocatalysts based on Pd-3D transition metal alloys for direct methanol fuel cells. J Electrochem Soc 153:A20–A24CrossRef Lee K, Savadogo O, Ishihara A, Mitsushima S, Kamiya N, Ota K-i (2006) Methanol-tolerant oxygen reduction electrocatalysts based on Pd-3D transition metal alloys for direct methanol fuel cells. J Electrochem Soc 153:A20–A24CrossRef
38.
Zurück zum Zitat Zhao J, Sarkar A, Manthiram A (2010) Synthesis and characterization of Pd–Ni nanoalloy electrocatalysts for oxygen reduction reaction in fuel cells. Electrochim Acta 55:1756–1765CrossRef Zhao J, Sarkar A, Manthiram A (2010) Synthesis and characterization of Pd–Ni nanoalloy electrocatalysts for oxygen reduction reaction in fuel cells. Electrochim Acta 55:1756–1765CrossRef
39.
Zurück zum Zitat Zhang L, Lee K, Zhang J (2007) The effect of heat treatment on nanoparticle size and ORR activity for carbon-supported Pd–Co alloy electrocatalysts. Electrochim Acta 52:3088–3094CrossRef Zhang L, Lee K, Zhang J (2007) The effect of heat treatment on nanoparticle size and ORR activity for carbon-supported Pd–Co alloy electrocatalysts. Electrochim Acta 52:3088–3094CrossRef
40.
Zurück zum Zitat Liu H, Li W, Manthiram A (2009) Factors influencing the electrocatalytic activity of Pd100–xCox (0 ≤ x ≤ 50) nanoalloys for oxygen reduction reaction in fuel cells. Appl Catal B 90:184–194CrossRef Liu H, Li W, Manthiram A (2009) Factors influencing the electrocatalytic activity of Pd100–xCox (0 ≤ x ≤ 50) nanoalloys for oxygen reduction reaction in fuel cells. Appl Catal B 90:184–194CrossRef
41.
Zurück zum Zitat Li X, Huang Q, Zou Z, Xia B, Yang H (2008) Low temperature preparation of carbon-supported PdCo alloy electrocatalysts for methanol-tolerant oxygen reduction reaction. Electrochim Acta 53:6662–6667CrossRef Li X, Huang Q, Zou Z, Xia B, Yang H (2008) Low temperature preparation of carbon-supported PdCo alloy electrocatalysts for methanol-tolerant oxygen reduction reaction. Electrochim Acta 53:6662–6667CrossRef
42.
Zurück zum Zitat Wang W, Zheng D, Du C, Zou Z, Zhang X, Xia B, Yang H, Akins DL (2007) Carbon-supported Pd–Co bimetallic nanoparticles as electrocatalysts for the oxygen reduction reaction. J Power Sources 167:243–249CrossRef Wang W, Zheng D, Du C, Zou Z, Zhang X, Xia B, Yang H, Akins DL (2007) Carbon-supported Pd–Co bimetallic nanoparticles as electrocatalysts for the oxygen reduction reaction. J Power Sources 167:243–249CrossRef
43.
Zurück zum Zitat Mustain WE, Kepler K, Prakash J (2007) CoPdx oxygen reduction electrocatalysts for polymer electrolyte membrane and direct methanol fuel cells. Electrochim Acta 52:2102–2108CrossRef Mustain WE, Kepler K, Prakash J (2007) CoPdx oxygen reduction electrocatalysts for polymer electrolyte membrane and direct methanol fuel cells. Electrochim Acta 52:2102–2108CrossRef
44.
Zurück zum Zitat Tarasevich MR, Chalykh AE, Bogdanovskaya VA, Kuznetsova LN, Kapustina NA, Efremov BN, Ehrenburg MR, Reznikova LA (2006) Kinetics and mechanism of oxygen reduction reaction at CoPd system synthesized on XC72. Electrochim Acta 51:4455–4462CrossRef Tarasevich MR, Chalykh AE, Bogdanovskaya VA, Kuznetsova LN, Kapustina NA, Efremov BN, Ehrenburg MR, Reznikova LA (2006) Kinetics and mechanism of oxygen reduction reaction at CoPd system synthesized on XC72. Electrochim Acta 51:4455–4462CrossRef
45.
Zurück zum Zitat Alexeyeva N, Sarapuu A, Tammeveski K, Vidal-Iglesias FJ, Solla-Gullón J, Feliu JM (2011) Electroreduction of oxygen on Vulcan carbon supported Pd nanoparticles and Pd–M nanoalloys in acid and alkaline solutions. Electrochim Acta 56:6702–6708CrossRef Alexeyeva N, Sarapuu A, Tammeveski K, Vidal-Iglesias FJ, Solla-Gullón J, Feliu JM (2011) Electroreduction of oxygen on Vulcan carbon supported Pd nanoparticles and Pd–M nanoalloys in acid and alkaline solutions. Electrochim Acta 56:6702–6708CrossRef
46.
Zurück zum Zitat Pires FI, Villullas HM (2012) Pd-based catalysts: influence of the second metal on their stability and oxygen reduction activity. Int J Hydrogen Energy 37:17052–17059CrossRef Pires FI, Villullas HM (2012) Pd-based catalysts: influence of the second metal on their stability and oxygen reduction activity. Int J Hydrogen Energy 37:17052–17059CrossRef
47.
Zurück zum Zitat Liu L, Samjeske G, Nagamatsu S-I, Sekizawa O, Nagasawa K, Takao S, Imaizumi Y, Yamamoto T, Uruga T, Iwasawa Y (2013) Dependences of the oxygen reduction reaction activity of Pd–Co/C and Pd–Ni/C alloy electrocatalysts on the nanoparticle size and lattice constant. Top Catal 57:595–606CrossRef Liu L, Samjeske G, Nagamatsu S-I, Sekizawa O, Nagasawa K, Takao S, Imaizumi Y, Yamamoto T, Uruga T, Iwasawa Y (2013) Dependences of the oxygen reduction reaction activity of Pd–Co/C and Pd–Ni/C alloy electrocatalysts on the nanoparticle size and lattice constant. Top Catal 57:595–606CrossRef
48.
Zurück zum Zitat Martínez-Casillas DC, Vazquez-Huerta G, Perez-Robles JF, Solorza-Feria O (2010) Synthesis and characterization of PdAg nanoparticles as oxygen electrocatalyst in acidic medium. J New Mater Electrochem Syst 13:163–169 Martínez-Casillas DC, Vazquez-Huerta G, Perez-Robles JF, Solorza-Feria O (2010) Synthesis and characterization of PdAg nanoparticles as oxygen electrocatalyst in acidic medium. J New Mater Electrochem Syst 13:163–169
49.
Zurück zum Zitat Martínez-Casillas DC, Vázquez-Huerta G, Pérez-Robles JF, Solorza-Feria O (2011) Electrocatalytic reduction of dioxygen on PdCu for polymer electrolyte membrane fuel cells. J Power Sources 196:4468–4474CrossRef Martínez-Casillas DC, Vázquez-Huerta G, Pérez-Robles JF, Solorza-Feria O (2011) Electrocatalytic reduction of dioxygen on PdCu for polymer electrolyte membrane fuel cells. J Power Sources 196:4468–4474CrossRef
Metadaten
Titel
Comparison of the Activity of Pd–M (M: Ag, Co, Cu, Fe, Ni, Zn) Bimetallic Electrocatalysts for Oxygen Reduction Reaction
verfasst von
Georgios Bampos
Symeon Bebelis
Dimitris I. Kondarides
Xenophon Verykios
Publikationsdatum
13.04.2017
Verlag
Springer US
Erschienen in
Topics in Catalysis / Ausgabe 15-16/2017
Print ISSN: 1022-5528
Elektronische ISSN: 1572-9028
DOI
https://doi.org/10.1007/s11244-017-0795-z

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