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Synthesis, studies and fuel cell performance of “core–shell” electrocatalysts for oxygen reduction reaction based on a PtNix carbon nitride “shell” and a pyrolyzed polyketone nanoball “core”

Articolo
Data di Pubblicazione:
2014
Abstract:
This report describes a new class of "core-shell" electrocatalysts for oxygen reduction reaction (ORR) processes for application in Proton Exchange Membrane Fuel Cells (PEMFCs). The electrocatalysts are obtained by supporting a "shell" consisting of PtNix alloy nanoparticles embedded into a carbon nitride matrix (indicated as PtNix -CN) on a "core" of pyrolyzed polyketone nanoballs, labeled 'STp'. STps are obtained by the sulfonation and pyrolysis of a precursor consisting of XC-72R carbon nanoparticles wrapped by polyketone (PK) fibers. The STps are extensively characterized in terms of the chemical composition, thermal stability, degree of graphitization and morphology. The "core-shell" ORR electrocatalysts are prepared by the pyrolysis of precursors obtained impregnating the STp "cores" with a zeolitic inorganic-organic polymer electrolyte (Z-IOPE) plastic material. The electrochemical performance of the electrocatalysts in the ORR is tested "in situ" by single fuel cell tests. The interplay between the chemical composition, the degree of graphitization of both PtNix -CN "shell" and STps "cores", the morphology of the electrocatalysts and the fuel cell performance is elucidated. The most crucial preparation parameters for the optimization of the various features affecting the fuel cell performance of this promising class of ORR electrocatalysts are identified.
Tipologia CRIS:
01.01 - Articolo in rivista
Keywords:
Core-shell carbon nitride-based electrocatalysts; Inductively coupled plasma atomic emission spectroscopy; Proton exchange membrane fuel cells; Vibrational spectroscopy; Pyrolyzed polyketone nanoballs
Elenco autori:
DI NOTO, Vito; Negro, Enrico; S., Polizzi; Vezzu', Keti; L., Toniolo; Cavinato, Gianni
Autori di Ateneo:
CAVINATO GIANNI
DI NOTO VITO
NEGRO ENRICO
VEZZU' KETI
Link alla scheda completa:
https://www.research.unipd.it/handle/11577/2685104
Pubblicato in:
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
Journal
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