Journal of Polymer Science Part A Polymer Chemistry · 2004 · 70 citations · 33 references
Membrane StructureEngineeringMembrane CharacterizationChemistryMembrane PropertiesPolymersConducting PolymerChemical EngineeringBridging GroupHybrid MaterialsPolymer ChemistryStructure–property CorrelationsIon Exchange CapacityMolecular EngineeringPolymer MembraneBiomolecular EngineeringSulfonated PolyimidesPolymer ScienceSulfonic Acid ContentFunctional MaterialsPolymer Hybrid
Abstract A series of six‐membered sulfonated polyimides were synthesized using 1,4,5,8‐naphthalenetetracarboxylic dianhydride, 4,4′‐diaminobiphenyl 2,2′‐disulfonic acid as the sulfonated diamine, and various nonsulfonated diamine monomers having different bridging groups. These bulky bridging groups have the capacity to increase hydrolytic stability and proton conductivity. Polyimides with bulky bridging groups showed increased solubility but exhibited lower thermal stability. The ion exchange capacity and water uptake reduced with increase in the bulkiness of the bridging group. This was attributed to the increase in the molecular weight of the repeating unit and hence effectively reduced the sulfonic acid content. In low temperatures, the conductivity was lower than Nafion®115 and, with increase in temperature, the conductivity rapidly increased and exhibited better conductivity than Nafion®115. Polyimides with bulky bridging groups 4‐amino phenyl sulfone, and 2‐bis[4‐(4‐aminophenoxy)phenyl]hexafluoropropane showed higher conductivity than other polyimides and Nafion®115 despite low ion exchange capacity. The hydrolytic stability of the polyimides with bulky bridging groups was higher than the polyimides with less bulky atoms because of the imparted flexibility. © 2004 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 42: 3612–3620, 2004
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Materials for fuel-cell technologies
Brian Steele, Angelika Heinzel · Nature · 2001 · 7.6K citations
Materials Science, Chemical Engineering, Fuel-cell Technologies +6
Feng Wang, Michael A. Hickner, Yu Seung Kim et al. · Journal of Membrane Science · 2002 · 1.1K citations