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Synthesis and characterization of sulfonated poly(arylene ether sulfone) ionomers incorporating perfluorohexylene units for DMFC membranes

机译:含全氟己烯单元的DMFC膜磺化聚亚芳基醚砜离聚物的合成与表征

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摘要

A new, sulfonated poly(arylene ether sulfone) ionomer with partially fluorinated groups (F-SPAES) was synthesized by the direct polymerization of 1,6-bis(4-fluororphenyl)-perfluorohexane (FPPFH) and 6F-bisphenol A (6F-BPA) with 3,3′-disulfonated 4,4′-difluorodiphenyl sulfone (SDFDPS). The effect of fluorination on the membrane properties and membrane-electrode assembly (MEA) performance for DMFC applications were investigated comprehensively and compared with the pristine SPAES sample. Deliberate control of the hydrophobicity as well as the degree of sulfonation in the F-SPAES membranes allows the effective suppression of water uptake and methanol permeability, while barely affecting the proton conductivity and IEC value. Such an improvement in the membrane properties contributes to the superior single cell performance of the F-SPAES compared to pristine SPAES and Nafion®.
机译:通过将1,6-双(4-氟代苯基)-全氟己烷(FPPFH)与6F-双酚A(6F- BPA)与3,3'-磺化的4,4'-二氟二苯砜(SDFDPS)。全面研究了氟化对DMFC应用的膜性能和膜电极组件(MEA)性能的影响,并将其与原始SPAES样品进行了比较。故意控制F-SPAES膜的疏水性和磺化度可以有效抑制水的吸收和甲醇的渗透性,而几乎不影响质子的电导率和IEC值。与原始SPAES和Nafion®相比,这种膜性能的改善有助于F-SPAES的出色单细胞性能。

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