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首页> 外文期刊>Journal of Applied Polymer Science >Branched poly(biphenylene-co-sulfone)ether ion exchange membranes containing perfluorocyclobutane groups for fuel cell applications
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Branched poly(biphenylene-co-sulfone)ether ion exchange membranes containing perfluorocyclobutane groups for fuel cell applications

机译:支化聚(共苯二甲砜)醚离子交换膜,含有全氟环丁烷基团用于燃料电池应用

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A series of branched poly(biphenylene-co-sulfone) ion exchange membranes containing perfluorocyclobutane groups were prepared for fuel cells. Two bifunctional trifluorovinyloxy-terminated monomers (sulfonable 4,4 '-bis(trifluorovinyloxy)biphenyl and insulfonable 4,4 '-sulfonyl-bis(trifluorovinyloxy)biphenyl) and a trifunctional trifluorovinyloxy-terminated branching agent (1,1,1-tris(4 '-trifluorovinyloxyphenyl)ethane) were synthesized and terpolymerized via thermal [2 pi + 2 pi] cyclodimerization to obtain partially fluorinated and branched polymers containing 0-5 mol% of the branching agent. They were then postsulfonated by chlorosulfonic acid at room temperature, cast as membranes, and characterized to evaluate their electrochemical properties for fuel cell applications. As the branching agent content was increased, their polydispersity values highly increased, indicating they became highly branched. It was confirmed that higher branching agent content also increased the ion exchange capacity, water uptake, and proton conductivity of the branched ion exchange membranes containing perfluorocyclobutane groups. This indicates that their electrochemical properties can be easily controlled by the degree of branching. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 48373.
机译:为燃料电池制备含有全氟环丁烷基团的一系列支化聚(共苯基 - 共砜)离子交换膜。两种双官能三氟乙烯氧基 - 封端的单体(磺酰芳基氧基)联苯基和稀释的4,4'-磺酰基 - 双(三氟乙烯氧基)联苯基)和三官能三氟乙烯氧基封闭支化(1,1,1-三(通过热[2 pi + 2 pi]环二聚体合成4'-氟乙烯酰氧基苯基)乙烷,得到含有0-5摩尔%的支化剂的部分氟化和支链聚合物。然后,它们在室温下被氯磺酸将其融合,作为膜铸造,并表征评估其用于燃料电池应用的电化学性能。随着支化剂含量的增加,它们的多分散性值高度增加,表明它们变得高度分支。证实,较高的支化剂含量也增加了含有全氟环丁烷基团的支链离子交换膜的离子交换能力,水吸收和质子电导率。这表明它们的电化学性能可以容易地通过分支程度来控制。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,48373。

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