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Alternative architectures and materials for PEMFC gas diffusion layers: A review and outlook

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出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.rser.2022.112640

关键词

Polymer Electrolyte Fuel Cells; Porous Media; Gas diffusion layer; Microporous layer; New materials and designs; Water Management

资金

  1. ESPRC CDT for Clean Fossil Energy and Carbon Capture Storage [EP/L016362/1]
  2. International Flame Research Foundation
  3. Royal Society (RS) : The bilateral Royal Society (RS) - Japan Society for the Promotion of Science (JSPS) [IEC\R3\170032]

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This paper reviews new innovations in both macroporous substrate and microporous layer (MPL), covering a diverse range of materials and designs. It assesses the performance improvements of innovative MPL materials and designs, considering pore size distribution and microstructure. The analysis shows that significant performance enhancement can be achieved through employing graduated porosity and/or wettability GDLs. Recommendations for future work are made to improve overall cell efficiency.
This paper reviews some of these new innovations in both the macroporous substrate and the microporous layer (MPL). A diverse range of macroporous substrates and designs is shown, encompassing various carbon-based and metal-based materials and innovative fabrication methodologies. A critical assessment of innovative MPL materials and designs for performance improvements is presented, taking into account pore size distribution and microstructure. An analysis of the effect of wettability and hydrophobic agents in the substrate and MPL is performed. One of the notable findings is that, among other key findings, significant performance enhancement is realised through employing graduated porosity and/or wettability GDLs. Finally, recommendations for future work into GDL materials and designs are made, with the aim of ultimately improving the overall cell efficiency.

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