Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7733253 | Journal of Power Sources | 2015 | 9 Pages |
Abstract
In this study, the microporous layer (MPL) of the polymer electrolyte membrane (PEM) fuel cell was analysed at the nano-scale. Atomic force microscopy (AFM) was utilized to image the top layer of MPL particles, and a curve fitting algorithm was used to determine the particle size and filling radius distributions for SGL-10BB and SGL-10BC. The particles in SGL-10BC (approximately 60Â nm in diameter) have been found to be larger than those in SGL-10BB (approximately 40Â nm in diameter), highlighting structural variability between the two materials. The impact of the MPL particle interactions on the effective thermal conductivity of the bulk MPL was analysed using a discretization of the Fourier equation with the Gauss-Seidel iterative method. It was found that the particle spacing and filling radius dominates the effective thermal conductivity, a result which provides valuable insight for future MPL design.
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Electrochemistry
Authors
S.J. Botelho, A. Bazylak,