New chemistry for a high-temperature resistant ionomer layer in membrane electrode assembly (MEA) for fuel cell
Membrane electrode assemblies (MEAs) are essential components of fuel cells, which use the reaction between hydrogen and oxygen to generate electricity. Although significant progress has already been made in terms of overall performance, research is directed at improving efficiency by developing MEA systems that operate at high temperatures. Here we will use neutron spectroscopy to study how the transport properties effects in new MEA formulations designed for high temperature operation to aid in their evaluation for fuel cell performance. Neutron data will be benchmarked against NMR data.
The data is currently only available to download if you are a member of the proposal team.
The recommended format for citing this dataset in a research publication is in the following format:
FOGLIA Fabrizia; GALLASTEGUI Antonela; LYONNARD Sandrine; MECERREYES David; OLLIVIER Jacques and SMITH Keenan. (2023). New chemistry for a high-temperature resistant ionomer layer in membrane electrode assembly (MEA) for fuel cell. Institut Laue-Langevin (ILL) doi:10.5291/ILL-DATA.9-11-2087
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This data is not yet public