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Nanocystalline cellulose reinforced sulfonated fluorenyl-containing polyaryletherketones for proton exchange membranes

机译:用于质子交换膜的纳米囊藻纤维素增强磺化含芴基的聚芳醚酮

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Sulfonated fluorenyl-containing polyaryletherketones (SFPAEKs) were synthesized through a postsulfonation approach under a mild reaction condition. The composite proton exchange membranes based on SFPAEKs and various amounts of the modified nanocrystalline cellulose (NCC) were prepared by solution casting method. The existence of the multiple hydroxyl and sulfonic acid groups on the chemically modified nanocrystalline cellulose was supposed to benefit the formation of hydrogen-bond network and proton-conducting channels, which would improve the proton conducting ability of the composite membranes. Furthermore, the properties, such as mechanical properties, thermal stability, water uptake, swelling ratio and so on, were thoroughly investigated. In comparison to the pristine SFPAEK, the composite membranes containing a "performance enhanced" NCC component presented the higher proton conductivity and better mechanical properties. It was found that the proton conductivity of the composite membrane with 4 wt% of NCC could reach 0.234 S cm(-1) at 100 degrees C, and this value was higher than that of most of the reported membranes. The results showed that the modified nanocrystalline cellulose reinforced SFPAEK composite membrane would be promising for the application as middle-temperature proton exchange membranes in fuel cells. (C) 2016 Published by Elsevier B.V.
机译:通过后磺化方法在温和的反应条件下合成了含磺基的含芴基的聚芳醚酮(SFPAEKs)。通过溶液流延法制备了基于SFPAEKs的复合质子交换膜和各种量的改性纳米晶纤维素(NCC)。化学修饰的纳米晶纤维素上存在多个羟基和磺酸基团被认为有利于氢键网络和质子传导通道的形成,这将改善复合膜的质子传导能力。此外,还对机械性能,热稳定性,吸水率,溶胀率等性能进行了深入研究。与原始的SFPAEK相比,含有“性能增强”的NCC组分的复合膜具有更高的质子传导性和更好的机械性能。发现在100摄氏度下,含4%的NCC的复合膜的质子电导率可以达到0.234 S cm(-1),该值高于大多数报道的膜。结果表明,改性的纳米晶纤维素增强的SFPAEK复合膜有望作为中温质子交换膜在燃料电池中的应用。 (C)2016由Elsevier B.V.发布

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