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Physical science of materials
Analysis of mass-transport losses in structure-modified electrodes of air–hydrogen fuel cells by the current–voltage characteristic method
N. V. Glebova, A. O. Krasnova, A. A. Nechitailov, À. À. Tomasov, N. K. Zelenina Ioffe Institute, St. Petersburg
Abstract:
We have tested platinum–carbon electrodes with mixed conductivity as parts of membrane electrode assemblies of fuel cells containing structure-modifying additives with different structural elements (carbon nanotubes with extended structural elements and graphene-like materials with nearly 2D planes). Mass-transport losses of molecular oxygen transfer in these electrodes have been investigated on the basis of data on the limiting current density obtained in the potentiodynamic and potentiostatic regimes. The pressure dependences of the current density have been plotted using various conditions of measurements. Limiting factors and oxygen transport mechanisms in the tested structures and the role of introduced modifiers have been determined.
Keywords:
platinum-carbon electrodes, mass transfer, membrane electrode assemblies, Nafion.
Received: 06.08.2020 Revised: 13.11.2020 Accepted: 14.11.2020
Citation:
N. V. Glebova, A. O. Krasnova, A. A. Nechitailov, À. À. Tomasov, N. K. Zelenina, “Analysis of mass-transport losses in structure-modified electrodes of air–hydrogen fuel cells by the current–voltage characteristic method”, Zhurnal Tekhnicheskoi Fiziki, 91:4 (2021), 627–634; Tech. Phys., 66:4 (2021), 588–595
Linking options:
https://www.mathnet.ru/eng/jtf5038 https://www.mathnet.ru/eng/jtf/v91/i4/p627
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