Microstructure reconstruction of the gas diffusion layer and analyses of the anisotropic transport properties

Author:

Zhang Heng,Zhu LijunORCID,Harandi Hesam Bazargan,Duan Kangjun,Zeis RoswithaORCID,Sui Pang-Chieh,Chuang Po‐Ya Abel

Funder

China Scholarship Council

Philippine California Advanced Research Institutes

National Natural Science Foundation of China

Publisher

Elsevier BV

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

Reference76 articles.

1. Development of 1-D multiphysics PEMFC model with dry limiting current experimental validation;Rahman;Electrochim Acta,2019

2. Effect of inhomogeneous compression of gas diffusion layer on the performance of PEMFC with interdigitated flow field;Mahmoudi;Energy Convers Manage,2016

3. Performance enhancement of polymer electrolyte membrane fuel cells with a hybrid wettability gas diffusion layer;Wang;Energy Convers Manage,2020

4. T. Berning, C. Wieser, P.-Y.A. Chuang, T.A. Trabold. Method for optimizing diffusion media with spatially varying mass transport resistance. US Patents. US 7,829,230 B2 (2010).

5. The interactive effect of heat and mass transport on water condensation in the gas diffusion layer of a proton exchange membrane fuel cell;Chuang;J Power Sources,2020

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