Methods to Measure the Electrical Resistances of a Gas Diffusion Layer Under Mechanical Compression

Author:

Bouziane Khadidja12,Khetabi E. M.12,Lachat R.3,Candusso D.12,Meyer Y.4ORCID

Affiliation:

1. Université Paris‐Saclay ENS Paris‐Saclay, Université Gustave Eiffel, SATIE Versailles Satory France

2. FCLAB, Plateforme Hydrogène Energie, UTBM bât. F, Rue Thierry Mieg Belfort France

3. ICB, CNRS, Univ. Bourgogne Franche‐Comté, UTBM Belfort France

4. Université Savoie Mont Blanc, SYMME Annecy France

Abstract

ABSTRACTIn a proton exchange membrane fuel cell (FC), the gas diffusion layer (GDL) is identified as the component that is most affected by mechanical compression. In this article, a particular focus is provided on the methods to measure the three main electrical parameters—contact resistance, through‐plane resistance, and in‐plane resistance—of the GDL under compression. A nonlinear decrease of these resistances under compression is typically observed. In particular, an important decrease is observed from 0 to 2 MPa, then a lower one above 2 MPa. The smallest contact and in‐plane resistances are measured for the graphitized straight carbon papers analyzing GDL resistances under compression gives a first approach to explaining ohmic losses in FCs as a large part of these losses is related to the GDL. This review would be helpful for researchers in better understanding ohmic losses and establishing a database of main GDL electrical resistances and their variations according to several operating parameters. These data could be used in design models to optimize GDL properties.

Publisher

Wiley

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