Pore network modeling of a microporous layer for polymer electrolyte fuel cells under wet conditions
Author:
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Physical and Theoretical Chemistry,Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment
Reference28 articles.
1. Direct water balance analysis on a polymer electrolyte fuel cell (PEFC): Effects of hydrophobic treatment and micro-porous layer addition to the gas diffusion layer of a PEFC on its performance during a simulated start-up operation;Nakajima;J. Power Sources,2007
2. Microporous layer coated gas diffusion layers for enhanced performance of polymer electrolyte fuel cells;Kitahara;J. Power Sources,2010
3. Water management in a PEMFC: Water transport mechanism and material degradation in gas diffusion layers;Kandlikar;Fuel Cells,2011
4. Novel superhydrophobic microporous layers for enhanced performance and efficient water management in PEM fuel cells;Latorrata;Int. J. Hydrog. Energy,2014
5. Triple microporous layer coated gas diffusion layer for performance enhancement of polymer electrolyte fuel cells under both low and high humidity conditions;Kitahara;J. Power Sources,2014
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1. Influence of binder content on gas-water two-phase flow and displacement phase diagram in the gas diffusion layer of PEMFC: A pore network view;International Journal of Heat and Mass Transfer;2024-10
2. Numerical simulation of comprehensive performance of proton exchange membrane electrolytic cell with microporous layer;International Journal of Hydrogen Energy;2024-08
3. Influence of Binder Content on Gas-Water Two-Phase Flow and Displacement Phase Diagram in the Gas Diffusion Layer of Pemfc: A Pore Network View;2024
4. The microporous layer in proton exchange membrane fuel cells, from transport mechanism to structural design;Journal of Power Sources;2023-10
5. Advances in Focused Ion Beam Tomography for Three-Dimensional Characterization in Materials Science;Materials;2023-08-24
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