4.5 Review

Novel Trends in Proton Exchange Membrane Fuel Cells

Journal

ENERGIES
Volume 15, Issue 14, Pages -

Publisher

MDPI
DOI: 10.3390/en15144949

Keywords

PEMFC; fuel cells' materials; manufacturing; hydrogen energy; clean energy; gas diffusion layer (GDL); metallic bipolar plate

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Fuel cells have been widely studied for their high conversion efficiency and flexibility. This work delved into the components and manufacturing processes of proton exchange membrane fuel cells, analyzing challenges and proposing mitigation strategies to aid in fuel cell development.
Fuel cells (FCs) have received huge attention for development from lab and pilot scales to full commercial scale. This is mainly due to their inherent advantage of direct conversion of chemical energy to electrical energy as a high-quality energy supply and, hence, higher conversion efficiency. Additionally, FCs have been produced at a wide range of capacities with high flexibility due to modularity characteristics. Using the right materials and efficient manufacturing processes is directly proportional to the total production cost. This work explored the different components of proton exchange membrane fuel cells (PEMFCs) and their manufacturing processes. The challenges associated with these manufacturing processes were critically analyzed, and possible mitigation strategies were proposed. The PEMFC is a relatively new and developing technology so there is a need for a thorough analysis to comprehend the current state of fuel cell operational characteristics and discover new areas for development. It is hoped that the view discussed in this paper will be a means for improved fuel cell development.

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