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Performance of Phosphonated Hydrocarbon Ionomer in the Fuel Cell Cathode Catalyst Layer

Wreland Lindström, Rakel (author)
KTH,Tillämpad elektrokemi
Oyarce, Alejandro (author)
KTH,Tillämpad elektrokemi
Aguinaga, Luis Guerrero (author)
KTH,Tillämpad elektrokemi
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Ubeda, Diego (author)
KTH,Tillämpad elektrokemi
Ingratta, Mark (author)
Lund University,Lunds universitet,Centrum för analys och syntes,Kemiska institutionen,Institutioner vid LTH,Lunds Tekniska Högskola,Centre for Analysis and Synthesis,Department of Chemistry,Departments at LTH,Faculty of Engineering, LTH
Jannasch, Patric (author)
Lund University,Lunds universitet,Centrum för analys och syntes,Kemiska institutionen,Institutioner vid LTH,Lunds Tekniska Högskola,Centre for Analysis and Synthesis,Department of Chemistry,Departments at LTH,Faculty of Engineering, LTH
Lindbergh, Göran (author)
KTH,Tillämpad elektrokemi
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 (creator_code:org_t)
2013-01-19
2013
English.
In: Journal of the Electrochemical Society. - : The Electrochemical Society. - 0013-4651 .- 1945-7111. ; 160:3, s. F269-F277
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Inexpensive and environmentally friendly electrolyte polymers that can be operated at higher temperatures and drier conditions are highly interesting for PEM fuel cells for automotive, portable power and stationary electricity generation applications. In this study an ionomer based on polysulfone grafted with poly(vinylphosphonic acid) (PSUgPVPA) in the cathode Pt/C catalyst layer was electrochemically characterized and compared to Nafion. The performance at different levels of humidity at 80 degrees C was evaluated by polarization measurements, cyclic voltammetry and electrochemical impedance spectroscopy (EIS). The results show that the performance of the PSUgPVPA-based cathode catalyst layer is comparable to that of Nafion-at 100% relative humidity (RH) but with some instabilities. However, at drier conditions significant losses of performance for the PSUgPVPA-based cathode was observed. This could be an effect of catalyst poisoning by the ionomer interfering with ORR. However, the concomitant decrease of the electrochemical surface area, double layer capacitance and increased imaginary impedance, indicate that the poorer performance at low humidity is mainly an effect of reduced catalyst wetting by the ionomer in combination with the decreased proton conduction in the ionomeric phase.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Kemiteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Chemical Engineering (hsv//eng)
NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)

Keyword

Gas-Diffusion Electrodes
Mass-Transport Limitations
Proton-Exchange Membranes
Pefc Cathode
Poly(Vinylphosphonic Acid)
Intermediate Temperature
Transient Techniques
Relative-Humidity
Protogenic Group
Side-Chains

Publication and Content Type

ref (subject category)
art (subject category)

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