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Proton exchange membranes with microphase separated structure from dual electrospun poly(ether ketone) mats: Producing ionic paths in a hydrophobic matrix

机译:双电纺聚醚醚酮毡具有微相分离结构的质子交换膜:在疏水性基质中产生离子路径

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With the purpose of preparing membranes containing separated hydrophobic/hydrophilic regions, fully sulfonated and non-sulfonated poly(ether ketone)s (PEK)s were synthesized and then electrospun simultaneously. After that, non-sulfonated fibers were melted and the fully sulfonated fibers were surrounded by them as a matrix. Four membranes with different contents of fully sulfonated fibers were prepared in this way. For comparison, two membranes from random sulfonated PEKs with the same structures were prepared by usual solution casting method. Investigation of properties revealed that membranes obtained from electrospinning process showed much better proton conductivities in comparison with membranes casted from random sulfonated copolymers with equivalent ion exchange capacities. Moreover, proton conductivity - particularly at higher temperatures - was comparable with Nafion whereas, maximum water absorption of prepared membranes was 13.2% and their swelling ratios were below 1.5%. Additionally, because PEKs are thermally stable polymers, prepared membranes can tolerate much higher temperatures compared to Nafion. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了制备包含分离的疏水/亲水区域的膜,合成了完全磺化和未磺化的聚醚酮(PEK),然后同时进行静电纺丝。之后,将未磺化的纤维熔融,将完全磺化的纤维包围为基质。以此方式制备了具有不同含量的完全磺化纤维的四个膜。为了比较,通过常规溶液流延方法制备了具有相同结构的无规磺化PEK的两个膜。性能研究表明,与由具有相同离子交换容量的无规磺化共聚物流延的膜相比,通过静电纺丝工艺获得的膜表现出更好的质子电导率。此外,质子传导率-特别是在较高温度下-与Nafion相当,而制得的膜的最大吸水率为13.2%,溶胀率低于1.5%。此外,由于PEK是热稳定的聚合物,因此与Nafion相比,制得的膜可以耐受更高的温度。 (C)2015 Elsevier B.V.保留所有权利。

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