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  4. Fluorinated Poly(aryl piperidinium) Membranes for Anion Exchange Membrane Fuel Cells
 
research article

Fluorinated Poly(aryl piperidinium) Membranes for Anion Exchange Membrane Fuel Cells

Wu, Xingyu  
•
Chen, Nanjun  
•
Hu, Chuan
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May 11, 2023
Advanced Materials

Anion-exchange-membrane fuel cells (AEMFCs) are a cost-effective alternative to proton-exchange-membrane fuel cells (PEMFCs). The development of high-performance and durable AEMFCs requires highly conductive and robust anion-exchange membranes (AEMs). However, AEMs generally exhibit a trade-off between conductivity and dimensional stability. Here, a fluorination strategy to create a phase-separated morphological structure in poly(aryl piperidinium) AEMs is reported. The highly hydrophobic perfluoroalkyl side chains augment phase separation to construct interconnected hydrophilic channels for anion transport. As a result, these fluorinated PAP (FPAP) AEMs simultaneously possess high conductivity (>150 mS cm(-1) at 80 degrees C) and high dimensional stability (swelling ratio <20% at 80 degrees C), excellent mechanical properties (tensile strength >80 MPa and elongation at break >40%) and chemical stability (>2000 h in 3 m KOH at 80 degrees C). AEMFCs with a non-precious Co-Mn spinel cathode using the present FPAP AEMs achieve an outstanding peak power density of 1.31 W cm(-2). The AEMs remain stable over 500 h of fuel cell operation at a constant current density of 0.2 A cm(-2).

  • Details
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Type
research article
DOI
10.1002/adma.202210432
Web of Science ID

WOS:000985983800001

Author(s)
Wu, Xingyu  
Chen, Nanjun  
Hu, Chuan
Klok, Harm-Anton  
Lee, Young Moo
Hu, Xile  
Date Issued

2023-05-11

Publisher

Wiley-V C H Verlag Gmbh

Published in
Advanced Materials
Volume

35

Issue

26

Article Number

2210432

Subjects

Chemistry, Multidisciplinary

•

Chemistry, Physical

•

Nanoscience & Nanotechnology

•

Materials Science, Multidisciplinary

•

Physics, Applied

•

Physics, Condensed Matter

•

Chemistry

•

Science & Technology - Other Topics

•

Materials Science

•

Physics

•

anion-exchange membranes

•

anion-exchange-membrane fuel cells

•

fluorination

•

microphase separation

•

poly(aryl piperidinium)

•

quaternary ammonium cations

•

ionomers

•

performance

•

mechanism

•

transport

•

catalysts

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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LSCI  
Available on Infoscience
June 5, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/197961
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