High-Temperature Polymer Electrolyte Membrane Fuel Cells
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-92917-0_3
Reference183 articles.
1. Li Q, He R, Gao J et al (2003) The CO poisoning effect in polymer electrolyte membrane fuel cells operational at temperatures up to 200 °C. J Electrochem Soc 150(12):A1599–A1605
2. Jensen JO, Li Q, Pan C et al (2007) High temperature PEMFC and the possible utilization of the excess heat for fuel processing. Int J Hydrogen Energy 32(10–11):1567–1571
3. Jensen JO, Li Q, He R et al (2005) 100–200 °C polymer fuel cells for use with NaAlH4. J Alloys Compd 404–406:653–656
4. Jaouen F, Proietti E, Lefévre M et al (2011) Recent advances in non-precious metal catalysis for oxygen-reduction reaction in polymer electrolyte fuel cells. Energy Environ Sci 4:114–130
5. Meyer S, Nikiforov AV, Petrushina IM et al (2015) Transition metal carbides (WC, Mo2C, TaC, NbC) as potential electrocatalysts for the hydrogen evolution reaction (HER) at medium temperatures. Int J Hydrogen Energy 40(7):2905–2911
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