4.6 Article

Proton Transport Mechanism of Perfluorosulfonic Acid Membranes

Journal

JOURNAL OF PHYSICAL CHEMISTRY C
Volume 118, Issue 31, Pages 17436-17445

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp504714d

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Funding

  1. Department of Energy (DOE), Office of Basic Energy Sciences (BES), Division of Chemical Sciences, Geosciences, and Biosciences [DE-FG02-10ER16171]
  2. Office of Science of the U.S. Department of Energy [DE-AC02-06CH11357]
  3. Croucher Foundation

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An understanding of proton transport within perfluorosulfonic acid (PFSA) membranes is crucial to improve the efficiency of proton exchange membrane fuel cells. Using reactive molecular dynamics simulations, we have examined proton transport in two PFSA materials, Hyflon and the 3M membrane, at three different hydration levels. The interaction between the sulfonate group of the polymer side chains and the hydrated protons was found to have only a small influence on the proton transport dynamics. Instead, proton swapping between sulfonate groups is the primary transport mechanism for the proton transport within the pore. The larger water clusters and more flexible side chain of the 3M membrane allows for an enhancement of this swapping mechanism compared to Hyflon. Membranes that can enhance this mechanism may result in greater proton conductivity.

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