Operando monitoring of the evolution of triple-phase boundaries in proton exchange membrane fuel cells

Q Meyer, S Liu, K Ching, Y Da Wang, C Zhao - Journal of Power Sources, 2023 - Elsevier
The electrochemical reactions in proton exchange membrane fuel cells take place at the
interface between the proton conductive electrolyte, gases, and catalyst active site, or the so …

The hydro-electro-thermal performance of air-cooled, open-cathode polymer electrolyte fuel cells: combined localised current density, temperature and water mapping

Q Meyer, S Ashton, R Jervis, DP Finegan, P Boillat… - Electrochimica …, 2015 - Elsevier
In situ diagnostic techniques provide a means of understanding the internal workings of fuel
cells so that improved designs and operating regimes can be identified. Here, a novel …

Nitrogen blanketing and hydrogen starvation in dead-ended-anode polymer electrolyte fuel cells revealed by hydro-electro-thermal analysis

Q Meyer, S Ashton, S Torija, C Gurney, P Boillat… - Electrochimica …, 2016 - Elsevier
Dead-ended anode operation has a number of practical advantages that simplify system
complexity and lower cost for polymer electrolyte fuel cells. However, dead-ended mode …

[PDF][PDF] The Hydro-electro-thermal Performance of Air-cooled

QMSAR Jervis, P Donal - Energy, 2008 - academia.edu
In situ diagnostic techniques provide a means of understanding the internal workings of fuel
cells so that improved designs and operating regimes can be identified. Here, a novel …

[引用][C] REVISED MANUSCRIPT

Q Meyer, S Ashton, S Torija, C Gurney, P Boillat… - 2016