Nanoscopic Post-Compression Effects on Transport Phenomena and Electrochemical Utilization in Quaternion Catalyst Layers for Fuel Cell Applications

Author:

Park Sungjea,Akbar Ali,Lee Jonghyun,Kim Young-Beom,Um SukkeeORCID

Funder

Korea Institute for Advancement of Technology

Korea Institute of Energy Technology Evaluation and Planning

Korea Evaluation Institute of Industrial Technology

Publisher

Springer Science and Business Media LLC

Subject

Management of Technology and Innovation,Industrial and Manufacturing Engineering,Mechanical Engineering,General Materials Science,Renewable Energy, Sustainability and the Environment

Reference59 articles.

1. Chen, L., He, A., Zhao, J., Kang, Q., Li, Z. Y., Carmeliet, J., Shikazono, N., & Tao, W. Q. (2022). Pore-scale modeling of complex transport phenomena in porous media. Progress in Energy and Combustion Science, 88, 100968. https://doi.org/10.1016/J.PECS.2021.100968

2. Fu, Y. L., Zhang, B., Zhu, X., Ye, D. D., Sui, P. C., & Djilali, N. (2020). Pore-scale modeling of oxygen transport in the catalyst layer of air-breathing cathode in membraneless microfluidic fuel cells. Applied Energy, 277, 115536. https://doi.org/10.1016/J.APENERGY.2020.115536

3. Deng, X., Zhang, J., Fan, Z., Tan, W., Yang, G., Wang, W., Zhou, W., & Shao, Z. (2020). Understanding and engineering of multiphase transport processes in membrane electrode assembly of proton-exchange membrane fuel cells with a focus on the cathode catalyst layer: A review. Energy & Fuels., 34, 9175–9188. https://doi.org/10.1021/ACS.ENERGYFUELS.0C02101

4. Deng, H., Hou, Y., Chen, W., Pan, F., & Jiao, K. (2019). Lattice Boltzmann simulation of oxygen diffusion and electrochemical reaction inside catalyst layer of PEM fuel cells. International Journal of Heat and Mass Transfer, 143, 118538. https://doi.org/10.1016/j.ijheatmasstransfer.2019.118538

5. Satjaritanun, P., Hirano, S., Zenyuk, I. V., Weidner, J. W., Tippayawong, N., & Shimpalee, S. (2020). Numerical study of electrochemical kinetics and mass transport inside nano-structural catalyst layer of PEMFC using lattice Boltzmann agglomeration method. Journal of the Electrochemical Society, 167, 013516. https://doi.org/10.1149/2.0162001JES/XML

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