Publication:
Cathode Materials for Proton Exchange Membrane Fuel Cells: From Metal and Metal Composite Catalysts to Carbon‐Supported Hybrids in Oxygen Reduction Reaction

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cris.virtual.author-orcid0000-0001-7957-0476
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cris.virtual.department#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtual.departmentFacultad de Ciencias
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cris.virtualsource.author-orcid4d4a79e2-e207-4adf-9348-e30ff50aa647
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cris.virtualsource.department4d4a79e2-e207-4adf-9348-e30ff50aa647
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dc.contributor.authorGarcés‐Barría, Claudia
dc.contributor.authorCáceres‐Díaz, Daniel
dc.contributor.authorTorres‐Fernández, Javiera
dc.contributor.authorBustamante, Tatiana M.
dc.contributor.authorDra. Elgueta-Herrera, Elizabeth
dc.contributor.authorSanhueza, Felipe
dc.date.accessioned2025-07-09T13:24:48Z
dc.date.available2025-07-09T13:24:48Z
dc.date.issued2025
dc.description.abstractThis review provides an overview of recent advancements in cathode materials for proton exchange membrane fuel cells (PEMFCs), focusing on their role in catalyzing the oxygen reduction reaction (ORR). This begins with a fundamental discussion of the ORR mechanism, including two‐electron and four‐electron pathways. The review then explores a wide range of electrocatalyst materials, starting with precious metal catalysts, particularly platinum‐based materials, along with alloying strategies and composite structures. This then delves into nonprecious metal catalysts, encompassing metal‐free ORR electrocatalysts, carbon‐supported composite materials (including heteroatom doping and metal‐carbon composites), and transition metal oxides. The review further examines metal phthalocyanines, biomass‐derived catalysts, bimetallic and trimetallic nanoparticles supported on carbon matrices, and chalcogenides (oxides, sulfides, and selenides) as ORR electrocatalysts. Advanced materials such as single‐ and dual‐atom catalysts, high‐entropy alloys, and metal organic frameworks derived electrocatalysts are also discussed. We analyze the identification of reaction sites and the effect of structure on catalytic activity. Furthermore, the review covers electrochemical measurements in PEMFCs and explores technological applications and industrial relevance, including products and patents. Finally, this review concludes by addressing future perspectives and challenges in the field of cathode materials for PEMFCs.
dc.identifier.doi10.1002/celc.202500146
dc.identifier.issn2196-0216
dc.identifier.issn2196-0216
dc.identifier.urihttps://repositorio.ucsc.cl/handle/25022009/12555
dc.relation.ispartofChemElectroChem
dc.relation.journalChemElectroChem
dc.rightsacceso abierto
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.subjectElectrocatalysts
dc.subjectNonprecious metal catalysts
dc.subjectOxygen reduction reaction
dc.subjectProton exchange membrane
dc.subjectFuel cells
dc.subjectPrecious metal catalysts
dc.titleCathode Materials for Proton Exchange Membrane Fuel Cells: From Metal and Metal Composite Catalysts to Carbon‐Supported Hybrids in Oxygen Reduction Reaction
dc.typeartículo
dspace.entity.typePublication
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oairecerif.author.affiliation#PLACEHOLDER_PARENT_METADATA_VALUE#
oairecerif.author.affiliationFacultad de Ciencias
oairecerif.author.affiliation#PLACEHOLDER_PARENT_METADATA_VALUE#
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