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首页> 外文期刊>Journal of Applied Polymer Science >Influence of Chemical Compositions on the Properties of Random and Multiblock Sulfonated Poly(arylene ether sulfone)-Based Proton-Exchange Membranes
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Influence of Chemical Compositions on the Properties of Random and Multiblock Sulfonated Poly(arylene ether sulfone)-Based Proton-Exchange Membranes

机译:化学成分对无规多嵌段磺化聚亚芳基醚砜基质子交换膜性能的影响

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摘要

The influence of chemical compositions on the properties of sulfonated poly(arylene ether sulfone)- based proton-exchange membranes was studied. First, we synthesized three different series of random SPAES copolymers using three kinds of hydrophobic monomers, including 4,40-dihydroxyldiphenylether, 2,6-dihydroxynaphthalene (DHN), and 4,40-hexafluoroisopropylidenediphenol (6F-BPA) to investigate effects of hydrophobic components on the properties of SPAES membranes as proton- exchange membranes. Random SPAES copolymers with 6F-BPA showed the highest proton conductivity while random SPAES copolymers with DHN displayed the lowest methanol permeability among the three random copolymers. Subsequently, we synthesized multiblock SPAES using the DHN as a hydrophobic monomer and studied the effect of the length of hydrophilic segments in the multiblock SPAES copolymers on membrane performance. The results indicated that longer hydrophilic segments in the copolymers led to higher water uptake, proton conductivity, and proton/methanol selectivity of membranes even at low humidity. In addition, the morphology studies (AFM and SAXS measurements) of membranes suggested that multiblock copolymers with long hydrophilic segments resulted in developed phase separation in membranes, and ionic clusters formed more easily, thus improving the membrane performance. Therefore, both the kinds of hydrophobic monomers and the length of hydrophilic segments in SPAES copolymers would influence the membranes performance as proton-exchange membranes.
机译:研究了化学成分对磺化聚(亚芳基醚砜)基质子交换膜性能的影响。首先,我们使用三种疏水性单体(包括4,40-二羟基二苯醚,2,6-二羟基萘(DHN)和4,40-六氟异亚丙基二苯二酚(6F-BPA))合成了三个不同系列的无规SPAES共聚物,以研究疏水性的影响组分对质子交换膜的SPAES膜性能的影响。在这三种无规共聚物中,具有6F-BPA的无规SPAES共聚物显示出最高的质子传导率,而具有DHN的无规SPAES共聚物显示出最低的甲醇渗透率。随后,我们使用DHN作为疏水单体合成了多嵌段SPAES,并研究了多嵌段SPAES共聚物中亲水链段的长度对膜性能的影响。结果表明,即使在低湿度下,共聚物中较长的亲水链段也会导致更高的吸水率,质子传导性和膜的质子/甲醇选择性。此外,膜的形态学研究(AFM和SAXS测量)表明,具有长亲水链段的多嵌段共聚物导致膜中发生了相分离,并且离子簇更容易形成,从而改善了膜性能。因此,SPAES共聚物中疏水性单体的种类和亲水性链段的长度都会影响质子交换膜的性能。

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