Achieving high proton conductivity for fuel cells based on chemically grafted poly(arylene ether ketone sulfone) and metal–organic frameworks
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference65 articles.
1. Enhanced ion conductivity of sulfonated poly(arylene ether sulfone) block copolymers linked by aliphatic chains constructing wide-range ion cluster for proton conducting electrolytes
2. Constructing foldable and stretchable proton exchange membranes through spin coating technology
3. Preparation and investigation on the low temperature proton exchange membranes with the enhanced proton conductivity at subzero temperature
4. Enhanced Proton Conductivity of Sulfonated Hybrid Poly(arylene ether ketone) Membranes by Incorporating an Amino–Sulfo Bifunctionalized Metal–Organic Framework for Direct Methanol Fuel Cells
5. Proton Conductivity of Proton Exchange Membrane Synergistically Promoted by Different Functionalized Metal–Organic Frameworks
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1. High conductivity and dimensional stability brominated poly (aryl piperidinium) anion exchange membranes: Synergistic interaction of hydrophilic and superhydrophobic fluorinated side chains;Journal of Membrane Science;2024-08
2. Poly (arylene ether ketone sulfone)s functionalized with diethylenetriamine-modified graphene oxide as proton exchange membranes for fuel cells;International Journal of Hydrogen Energy;2024-07
3. Biomass composite proton exchange membranes with high mechanical strength and proton conductivity based on chitosan and zwitterion-modified palygorskite;Applied Clay Science;2024-06
4. Enhanced oxidation stability and proton conductivity of sulfonated poly(arylene ether ketone sulfone)s via embedment of surface-modified ceria nanoparticles;Process Safety and Environmental Protection;2024-05
5. Hybrid Membrane of Sulfonated Poly(aryl ether ketone sulfone) Modified by Molybdenum Clusters with Enhanced Proton Conductivity;Small;2024-03-26
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