Effect of the support properties on the preparation and performance of platinum catalysts supported on carbon nanofibers
Platinum nanoparticles were supported on carbon nanofibers (CNFs) for their use as electrocatalyst for PEM fuel cells. Before platinum deposition, CNFs were oxidized using concentrated HNO 3 or a HNO 3–H 2SO 4 mixture as oxidizing agents. During these treatments, new surface oxygen groups were creat...
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Published in | Journal of power sources Vol. 192; no. 1; pp. 144 - 150 |
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Main Authors | , , , , , |
Format | Journal Article Conference Proceeding |
Language | English |
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Amsterdam
Elsevier B.V
01.07.2009
Elsevier |
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Abstract | Platinum nanoparticles were supported on carbon nanofibers (CNFs) for their use as electrocatalyst for PEM fuel cells. Before platinum deposition, CNFs were oxidized using concentrated HNO
3 or a HNO
3–H
2SO
4 mixture as oxidizing agents. During these treatments, new surface oxygen groups were created. Moreover, the most severe treatments resulted in the shortening of CNFs. Both effects allow to study the influence of both the morphology and the surface chemistry of CNFs on the preparation and performance of Pt electrocatalysts. Catalysts were prepared by the incipient wetness impregnation method. CNFs and electrocatalysts were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM) and N
2-physisorption. Furthermore, the performance of Pt/CNF based electrodes was compared with that of a commercial Pt/carbon black electrode (E-TEK) in a 1-cm
2 PEM fuel cell.
The results showed that both the surface chemistry and the morphology of the support have an important effect on the dispersion, particle size and activity of Pt catalysts. An increase in the agglomeration degree of Pt particles as the severity of oxidation treatments increased was observed. However, the performance of Pt/CNF electrodes was better than that of the commercial one. This was attributed to the CNF porous structure and to the better Pt–support interaction through the surface oxygen groups of the support. |
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AbstractList | Platinum nanoparticles were supported on carbon nanofibers (CNFs) for their use as electrocatalyst for PEM fuel cells. Before platinum deposition, CNFs were oxidized using concentrated HNO
3 or a HNO
3–H
2SO
4 mixture as oxidizing agents. During these treatments, new surface oxygen groups were created. Moreover, the most severe treatments resulted in the shortening of CNFs. Both effects allow to study the influence of both the morphology and the surface chemistry of CNFs on the preparation and performance of Pt electrocatalysts. Catalysts were prepared by the incipient wetness impregnation method. CNFs and electrocatalysts were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM) and N
2-physisorption. Furthermore, the performance of Pt/CNF based electrodes was compared with that of a commercial Pt/carbon black electrode (E-TEK) in a 1-cm
2 PEM fuel cell.
The results showed that both the surface chemistry and the morphology of the support have an important effect on the dispersion, particle size and activity of Pt catalysts. An increase in the agglomeration degree of Pt particles as the severity of oxidation treatments increased was observed. However, the performance of Pt/CNF electrodes was better than that of the commercial one. This was attributed to the CNF porous structure and to the better Pt–support interaction through the surface oxygen groups of the support. Platinum nanoparticles were supported on carbon nanofibers (CNFs) for their use as electrocatalyst for PEM fuel cells. Before platinum deposition, CNFs were oxidized using concentrated HNO@@d3@ or a HNO@@d3@- H@@d2@SO@@d4@ mixture as oxidizing agents. During these treatments, new surface oxygen groups were created. Moreover, the most severe treatments resulted in the shortening of CNFs. Both effects allow to study the influence of both the morphology and the surface chemistry of CNFs on the preparation and performance of Pt electrocatalysts. Catalysts were prepared by the incipient wetness impregnation method. CNFs and electrocatalysts were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM) and N@@d2@-physisorption. Furthermore, the performance of Pt/CNF based electrodes was compared with that of a commercial Pt/carbon black electrode (E-TEK) in a 1-cm@@u2@ PEM fuel cell. The results showed that both the surface chemistry and the morphology of the support have an important effect on the dispersion, particle size and activity of Pt catalysts. An increase in the agglomeration degree of Pt particles as the severity of oxidation treatments increased was observed. However, the performance of Pt/CNF electrodes was better than that of the commercial one. This was attributed to the CNF porous structure and to the better Pt- support interaction through the surface oxygen groups of the support. |
Author | Calvillo, L. Moliner, R. Gangeri, M. Lázaro, M.J. Centi, G. Perathoner, S. |
Author_xml | – sequence: 1 givenname: L. surname: Calvillo fullname: Calvillo, L. organization: Instituto de Carboquímica (CSIC), Miguel Luesma Castán 4, 50018 Zaragoza, Spain – sequence: 2 givenname: M. surname: Gangeri fullname: Gangeri, M. organization: Dipartimento di Chimica Industriale ed Ingegneria dei Materiali, Università di Messina, Salita Sperone 31, 98166 Messina, Italy – sequence: 3 givenname: S. surname: Perathoner fullname: Perathoner, S. organization: Dipartimento di Chimica Industriale ed Ingegneria dei Materiali, Università di Messina, Salita Sperone 31, 98166 Messina, Italy – sequence: 4 givenname: G. surname: Centi fullname: Centi, G. organization: Dipartimento di Chimica Industriale ed Ingegneria dei Materiali, Università di Messina, Salita Sperone 31, 98166 Messina, Italy – sequence: 5 givenname: R. surname: Moliner fullname: Moliner, R. organization: Instituto de Carboquímica (CSIC), Miguel Luesma Castán 4, 50018 Zaragoza, Spain – sequence: 6 givenname: M.J. surname: Lázaro fullname: Lázaro, M.J. email: mlazaro@icb.csic.es organization: Instituto de Carboquímica (CSIC), Miguel Luesma Castán 4, 50018 Zaragoza, Spain |
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Keywords | Carbon nanofibers Electrocatalyst PEMFC Morphology Surface chemistry Particle size Carbon black Polymer electrolytes Nanoparticle Pore structure Supported catalyst Surface treatment Impregnation Transmission electron microscopy Platinum Preparation Oxidation X ray diffractometry Performance Catalyst activity Fuel cell |
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Snippet | Platinum nanoparticles were supported on carbon nanofibers (CNFs) for their use as electrocatalyst for PEM fuel cells. Before platinum deposition, CNFs were... |
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SubjectTerms | Applied sciences Carbon nanofibers Electrocatalyst Energy Energy. Thermal use of fuels Equipments for energy generation and conversion: thermal, electrical, mechanical energy, etc Exact sciences and technology Fuel cells Morphology PEMFC Surface chemistry |
Title | Effect of the support properties on the preparation and performance of platinum catalysts supported on carbon nanofibers |
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