%0 Journal Article %@holdercode {isadg {BR SPINPE} ibi 8JMKD3MGPCW/3DT298S} %@nexthigherunit 8JMKD3MGPCW/3ET38CH %@resumeid %@resumeid %@resumeid %@resumeid %@resumeid 8JMKD3MGP5W/3C9JJ68 %@archivingpolicy denypublisher denyfinaldraft24 %@usergroup administrator %@usergroup ignes %3 electrocatalytic.pdf %@dissemination WEBSCI; PORTALCAPES. %2 sid.inpe.br/iris@1917/2006/02.16.11.52.06 %4 sid.inpe.br/iris@1917/2006/02.16.11.52 %X Abstract - The performances of platinum supported on carbon nanofibers (Pt/CNFs) and Pt nanoclusters on carbon Cloth (Ptnano/CC) as alternative electrodes for PEMfuel cells are compared with those of a commercial Pt-carbon black on carbon Cloth electrode in a 1 cm2 fuel cell working at room temperature. Carbon nanofibers were grown by chemical vapour deposition on two different types of microshaped carbon supports (Felt and Cloth) and then Pt was deposited on these nano/micro composite carbon supports. The analysis of the results and in particular of the polarization curves indicate that (i) both Ptnano/CC and Pt/CNFs materials are better electrocatalysts than commercial one and (ii) Ptnano/CC gives the lowest ohmic losses while Pt/CNFs materials give the lowest mass transfer losses. Further studies and a better membrane and electrodes assembly (MEA) engineering are necessary to further validate the results, but these preliminary analysis pointed out that new electrode materials based both on Pt nanoclusters and carbon nanostructures (nanofibers/nanotubes) could be very interesting for fuel cells applications. %T Electrocatalytic performances of nanostructured platinum-carbon materials %K Electrocatalysis, Carbon Cloth, Nanofiber, Fuel cell. %@secondarytype PRE PI %@group LCP-INPE-MCT-BR %@secondarykey INPE--PRE/ %@issn 0920-5861 %@affiliation University of Messina %@affiliation Universite Louis Pasteur Strasbourg %@affiliation European Laboratory for Surface Science and Catalysis (ELCASS) %@affiliation Instituto Nacional de Pesquisas Espaciais (INPE) %B Catalysis Today %P 50-57 %D 2005 %V 102-103 %A Gangeri, M., %A Centi, Gabriele, %A La Malfa, A., %A Perathoner, S., %A Vieira, Ricardo, %A Pham-Huu, Cuong, %A Ledoux, Marc-Jaques, %@area COMB