High temperature proton exchange porous membranes based on polybenzimidazole/ lignosulfonate blends: Preparation, morphology and physical and proton conductivity properties
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference55 articles.
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1. The strategy of micropore confinement via organic macrocyclic cavities for designing novel high-performance proton exchange membranes;Journal of Environmental Chemical Engineering;2024-06
2. Influence of structure construction on water uptake, swelling, and oxidation stability of proton exchange membranes;International Journal of Hydrogen Energy;2024-01
3. An imidazole-philic dispersible ionic liquid provides ample proton transport channels and high proton performances for high temperature proton exchange membranes;Chemical Engineering Journal;2023-11
4. Improved proton conductivity and mechanical performance of phosphoric acid doped aminated PAF-1 reinforced OPBI for high temperature proton exchange membranes;Composites Communications;2023-10
5. In situ etching strategy for the preparation of high-temperature proton-exchange membranes with continuous porous proton-transport channels;Journal of Membrane Science;2023-09
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