Enhanced mechanical durability of perfluorosulfonic acid proton-exchange membrane based on a double-layer ePTFE reinforcement strategy
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference44 articles.
1. Designing the next generation of proton-exchange membrane fuel cells;Jiao;Nature,2021
2. Recent advances and summarization of fault diagnosis techniques for proton exchange membrane fuel cell systems: a critical overview;Wang;J Power Sources,2021
3. Materials, technological status, and fundamentals of PEM fuel cells – a review;Wang;Mater Today,2020
4. A review of membranes in proton exchange membrane fuel cells: transport phenomena, performance and durability;Pan;Renew Sustain Energy Rev,2021
5. Mechanical failure and mitigation strategies for the membrane in a proton exchange membrane fuel cell;Qiu;Renew Sustain Energy Rev,2019
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1. Surface modification of expanded polytetrafluoroethylene to reinforced composite membranes for proton exchange membrane fuel cells;Applied Surface Science;2024-10
2. Ultra–thin ePTFE–enforced electrolyte and electrolyte–electrode(s) assembly for high–performance solid–state lithium batteries;Energy Storage Materials;2024-08
3. Durability improvement for ePTFE reinforced perfluorosulfonic acid membranes by natural organic free radical scavengers;International Journal of Hydrogen Energy;2024-04
4. Magnetically aligned composite membranes based on sulfonated poly(ether ether ketone) and phosphotungstic acid-loaded magnetic nanoparticles for fuel cell;International Journal of Hydrogen Energy;2024-02
5. SPEEK-co-PEK-x proton exchange membranes with controllable sulfonation degree for proton exchange membrane fuel cells;International Journal of Hydrogen Energy;2024-01
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