High-temperature PEMs based on polybenzimidazole and new nanoparticles for fuel cell application
Author:
Publisher
Springer Science and Business Media LLC
Subject
Materials Chemistry,Organic Chemistry,Polymers and Plastics
Link
http://link.springer.com/content/pdf/10.1007/s10965-019-1923-1.pdf
Reference48 articles.
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2. Lobato J, Canizares P, Rodrigo MA, Linares JJ, Manjavacas G (2006) Synthesis and characterization of poly[2,2-(m-phenylene)-5,5-bibenzimidazole] as polymer electrolyte membrane for high temperature PEMFCs. J Membr Sci 280:351–362
3. Hooshyari K-H, Javanbakht M, Adibi M (2016) Novel composite membranes based on PBI and dicationic ionic liquids for high temperature polymer electrolyte membrane fuel cells. Electrochim Acta 142:142–152
4. Kim T, Lim T, Lee J (2007) High-temperature fuel cell membranes based on mechanically stable para-ordered polybenzimidazole prepared by direct casting. J Power Sources 172:172–179
5. Hooshyari K-H, Javanbakht M, Adibi M (2016) Novel composite membranes based on dicationic ionic liquid and polybenzimidazole mixtures as strategy for enhancing thermal and electrochemical properties of proton exchange membrane fuel cells applications at high temperature. Int J Hydrog Energy 41:10870–10883
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2. Modification strategies for non-aqueous, highly proton-conductive benzimidazole-based high-temperature proton exchange membranes;Chinese Chemical Letters;2024-04
3. Enhancement of the Green H2 Production by Using TiO2 Composite Polybenzimidazole Membranes;Nanomaterials;2022-08-24
4. Characterization of PBI/Graphene Oxide Composite Membranes for the SO2 Depolarized Electrolysis at High Temperature;Membranes;2022-01-20
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