Towards highly performing and stable PtNi catalysts in polymer electrolyte fuel cells for automotive application
Articolo
Data di Pubblicazione:
2017
Abstract:
In order to help the introduction on the automotive market of polymer electrolyte fuel cells
(PEFCs), it is mandatory to develop highly performing and stable catalysts. The main objective of
this work is to investigate PtNi/C catalysts in a PEFC under low relative humidity and pressure
conditions, more representative of automotive applications. Carbon supported PtNi nanoparticles
were prepared by reduction of metal precursors with formic acid and successive thermal and leaching
treatments. The effect of the chemical composition, structure and surface characteristics of the
synthesized samples on their electrochemical behavior was investigated. The catalyst characterized
by a larger Pt content (Pt3Ni2/C) presented the highest catalytic activity (lower potential losses in
the activation region) among the synthesized bimetallic PtNi catalysts and the commercial Pt/C,
used as the reference material, after testing at high temperature (95 C) and low humidification
(50%) conditions for automotive applications, showing a cell potential (ohmic drop-free) of 0.82 V at
500 mAcm?2. In order to assess the electro-catalysts stability, accelerated degradation tests were
carried out by cycling the cell potential between 0.6 V and 1.2 V. By comparing the electrochemical and
physico-chemical parameters at the beginning of life (BoL) and end of life (EoL), it was demonstrated
that the Pt1Ni1/C catalyst was the most stable among the catalyst series, with only a 2% loss of
voltage at 200 mAcm?2 and 12.5% at 950 mAcm?2. However, further improvements are needed to
produce durable catalysts.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
PtNi/C catalyst; oxygen reduction reaction; polymer electrolyte fuel cell
Elenco autori:
SEBASTIAN DEL RIO, David; CAMPAGNA ZIGNANI, Sabrina; Arico', ANTONINO SALVATORE; Baglio, Vincenzo; Gatto, Irene; Sacca', Ada
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