Fuel cell catalyst layers containing short-side-chain perfluorosulfonic acid ionomers

Porous catalyst layers (CLs) containing short-side-chain (SSC) perfluorosulfonic acid (PFSA) ionomers of different ion exchange capacity (IEC: 1.3, 1.4 and 1.5 meq g −1) were deposited onto Nafion 211 to form catalyst-coated membranes. The porosity of SSC-PFSA-based CLs is larger than Nafion-CL anal...

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Published in:Journal of power sources Vol. 196; no. 1; pp. 179 - 181
Main Authors: Peron, Jennifer, Edwards, Dave, Haldane, Mark, Luo, Xiaoyan, Zhang, Yongming, Holdcroft, Steven, Shi, Zhiqing
Format: Journal Article
Language:English
Published: Amsterdam Elsevier B.V 2011
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Abstract Porous catalyst layers (CLs) containing short-side-chain (SSC) perfluorosulfonic acid (PFSA) ionomers of different ion exchange capacity (IEC: 1.3, 1.4 and 1.5 meq g −1) were deposited onto Nafion 211 to form catalyst-coated membranes. The porosity of SSC-PFSA-based CLs is larger than Nafion-CL analogues. CLs incorporating SSC ionomer extend the current density of fuel cell polarization curves at elevated temperature and lower relative humidity compared to those based on long-side chain PFSA (e.g., Nafion)-based CLs. Fuel cell polarization performance was greatly improved at 110 °C and 30% relative humidity (RH) when SSC PFSI was incorporated into the catalyst layer.
AbstractList Porous catalyst layers (CLs) containing short-side-chain (SSC) perfluorosulfonic acid (PFSA) ionomers of different ion exchange capacity (IEC: 1.3, 1.4 and 1.5 meq g super(-1)) were deposited onto Nafion 211 to form catalyst-coated membranes. The porosity of SSC-PFSA-based CLs is larger than Nafion-CL analogues. CLs incorporating SSC ionomer extend the current density of fuel cell polarization curves at elevated temperature and lower relative humidity compared to those based on long-side chain PFSA (e.g., Nafion)-based CLs. Fuel cell polarization performance was greatly improved at 110 C and 30% relative humidity (RH) when SSC PFSI was incorporated into the catalyst layer.
Porous catalyst layers (CLs) containing short-side-chain (SSC) perfluorosulfonic acid (PFSA) ionomers of different ion exchange capacity (IEC: 1.3, 1.4 and 1.5 meq g −1) were deposited onto Nafion 211 to form catalyst-coated membranes. The porosity of SSC-PFSA-based CLs is larger than Nafion-CL analogues. CLs incorporating SSC ionomer extend the current density of fuel cell polarization curves at elevated temperature and lower relative humidity compared to those based on long-side chain PFSA (e.g., Nafion)-based CLs. Fuel cell polarization performance was greatly improved at 110 °C and 30% relative humidity (RH) when SSC PFSI was incorporated into the catalyst layer.
Author Holdcroft, Steven
Peron, Jennifer
Luo, Xiaoyan
Edwards, Dave
Shi, Zhiqing
Zhang, Yongming
Haldane, Mark
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  email: ken.shi@nrc-cnrc.gc.ca
  organization: Institute for Fuel Cell Innovation, National Research Council Canada, Vancouver, British Columbia, Canada V6T 1W5
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Issue 1
Keywords PEM
PEMFC
Short-side-chain PFSA ionomer
Catalyst layers
Fuel cells
Low equivalent weight
Ionomer
Polymer electrolytes
Fluorosulfuric acid
Polymer solid electrolyte
Proton exchange membrane fuel cells
Catalyst
Fuel cell
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Snippet Porous catalyst layers (CLs) containing short-side-chain (SSC) perfluorosulfonic acid (PFSA) ionomers of different ion exchange capacity (IEC: 1.3, 1.4 and 1.5...
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SubjectTerms Applied sciences
Catalyst layers
Catalysts
Chains
Deposition
Direct energy conversion and energy accumulation
Electrical engineering. Electrical power engineering
Electrical power engineering
Electrochemical conversion: primary and secondary batteries, fuel cells
Energy
Energy. Thermal use of fuels
Equipments for energy generation and conversion: thermal, electrical, mechanical energy, etc
Exact sciences and technology
Fuel cells
Ionomers
Low equivalent weight
PEM
PEMFC
Polarization
Porosity
Relative humidity
Short-side-chain PFSA ionomer
Title Fuel cell catalyst layers containing short-side-chain perfluorosulfonic acid ionomers
URI https://dx.doi.org/10.1016/j.jpowsour.2010.06.050
https://search.proquest.com/docview/1777155693
https://search.proquest.com/docview/849453368
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