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首页> 外文期刊>Journal of Applied Polymer Science >Toward optimization of a robust low-cost sulfonated-polyethersulfone containing layered double hydroxide for PEM fuel cells
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Toward optimization of a robust low-cost sulfonated-polyethersulfone containing layered double hydroxide for PEM fuel cells

机译:探讨含有层状双氢氧化物的稳健低成本磺化聚醚砜的优化,用于PEM燃料电池

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Polyethersulphone (PES) is an aromatic thermoplastic, at low environmental impact, evaluated in this work as a promising candidate for new polymer electrolytes in the PEMFCs technology. A sulfonation procedure has been tuned in order to graft sulfonic acid groups on the polymer chains (sPES) and to make it hydrophilic. Homogeneous membranes with different polymer's sulfonation degrees (SD%) have demonstrated excellent mechanical properties and very low permeability toward methanol (important in the DMFCs), even if low proton conductivity. Nanocomposite sPES membranes were prepared by dispersion of highly hydrophilic lamellar particles such as layered double hydroxide (LDH) in the polymer. Deep investigations performed by a combination of PFG-NMR, EIS, XRD, DMA, and scanning electron microscopy have evidenced the exfoliation of the lamellae in polymer matrix. However, a certain anisotropy was evidenced both in the morphology and molecular diffusion, favored in the longitudinal direction (parallel to surface), while completely inhibited in the cross-section. This finding is most likely induced by the polymer structure, therefore particular attention must be paid to the choice of the filler and preparation of the composites. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 47884.
机译:聚醚砜(PES)是一种芳香族热塑性塑料,在低环境影响下,在这项工作中评估为PEMFCS技术的新型聚合物电解质的有希望的候选者。已经调整了磺化程序,以使聚合物链(SPES)上的移植磺酸基团并使其亲水。具有不同聚合物的磺化度(SD%)的均相膜已经证明了优异的机械性能和对甲醇的极低渗透性(在DMFC中重要),即使质子电导率低。通过将高亲水层状颗粒如聚合物中的层叠双氢氧化物(LDH)分散,制备纳米复合物SPES膜。通过PFG-NMR,EIS,XRD,DMA和扫描电子显微镜组合进行的深度调查已经证明了LAMELLAE在聚合物基质中的剥离。然而,在纵向(平行于表面)的形态和分子扩散中,在形态和分子扩散中证明了一定的各向异性,同时在横截面中完全抑制。该发现最有可能由聚合物结构引起,因此必须特别注意填料的选择和复合材料的制备。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,47884。

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