volume 161 issue 12 pages F1243-F1253

A Particle-Based Model for Effective Properties in Infiltrated Solid Oxide Fuel Cell Electrodes

A. Bertei 1
J. G. Pharoah 2, 3
D. A. W. Gawel 2, 3
C. Nicolella 1
Publication typeJournal Article
Publication date2014-09-11
scimago Q1
wos Q2
SJR0.774
CiteScore6.1
Impact factor3.3
ISSN00134651, 19457111
Materials Chemistry
Surfaces, Coatings and Films
Electronic, Optical and Magnetic Materials
Electrochemistry
Condensed Matter Physics
Renewable Energy, Sustainability and the Environment
Abstract
A modeling framework for the numerical reconstruction of the microstructure of infiltrated electrodes is presented in this study. A particle-based sedimentation algorithm is used to generate the backbone, while a novel packing algorithm is used to randomly infiltrate nanoparticles on the surface of backbone particles. The effective properties, such as the connected triple-phase boundary length, the effective conductivity, the effective diffusivity, are evaluated on the reconstructed electrodes by using geometric analysis, finite volume and random-walk methods, and reported in dimensionless form to provide generality to the results. A parametric study on the effect of the main model and operating parameters is performed. Simulations show that the critical loading (i.e., the percolation threshold) increases as the backbone porosity decreases and the nanoparticle diameter increases. Large triple-phase boundary length, specific surface area and good effective conductivity can be reached by infiltration, without detrimental effects on the effective transport properties in gas phase. Simulations reveal a significant sensitivity to the size and contact angle of infiltrated particles, suggesting that the preparation process of infiltrated electrodes should be properly tailored in order to obtain the optimized structures predicted by the model.
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GOST Copy
Bertei A. et al. A Particle-Based Model for Effective Properties in Infiltrated Solid Oxide Fuel Cell Electrodes // Journal of the Electrochemical Society. 2014. Vol. 161. No. 12. p. F1243-F1253.
GOST all authors (up to 50) Copy
Bertei A., Pharoah J. G., Gawel D. A. W., Nicolella C. A Particle-Based Model for Effective Properties in Infiltrated Solid Oxide Fuel Cell Electrodes // Journal of the Electrochemical Society. 2014. Vol. 161. No. 12. p. F1243-F1253.
RIS |
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RIS Copy
TY - JOUR
DO - 10.1149/2.0931412jes
UR - https://doi.org/10.1149/2.0931412jes
TI - A Particle-Based Model for Effective Properties in Infiltrated Solid Oxide Fuel Cell Electrodes
T2 - Journal of the Electrochemical Society
AU - Bertei, A.
AU - Pharoah, J. G.
AU - Gawel, D. A. W.
AU - Nicolella, C.
PY - 2014
DA - 2014/09/11
PB - The Electrochemical Society
SP - F1243-F1253
IS - 12
VL - 161
SN - 0013-4651
SN - 1945-7111
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2014_Bertei,
author = {A. Bertei and J. G. Pharoah and D. A. W. Gawel and C. Nicolella},
title = {A Particle-Based Model for Effective Properties in Infiltrated Solid Oxide Fuel Cell Electrodes},
journal = {Journal of the Electrochemical Society},
year = {2014},
volume = {161},
publisher = {The Electrochemical Society},
month = {sep},
url = {https://doi.org/10.1149/2.0931412jes},
number = {12},
pages = {F1243--F1253},
doi = {10.1149/2.0931412jes}
}
MLA
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MLA Copy
Bertei, A., et al. “A Particle-Based Model for Effective Properties in Infiltrated Solid Oxide Fuel Cell Electrodes.” Journal of the Electrochemical Society, vol. 161, no. 12, Sep. 2014, pp. F1243-F1253. https://doi.org/10.1149/2.0931412jes.