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首页> 外文期刊>Journal of Membrane Science >Sulfonated poly(arylene ether nitrile ketone) and its composite with phosphotungstic acid as materials for proton exchange membranes
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Sulfonated poly(arylene ether nitrile ketone) and its composite with phosphotungstic acid as materials for proton exchange membranes

机译:磺化聚亚芳基醚腈酮及其与磷钨酸为质子交换膜材料的复合材料

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A series of sulfonated poly(arylene ether nitriles ketone) (SPAENK) copolymers with controlled degree of sulfonation (DS) were synthesized by direct copolymerization of 4,4'-(hexafluoroisopropylidene)diphenol with 2,6-difluorobenzonitrile and sodium 5,5'-carbonylbis(2-fluorobenzene-sulfonate) at various molar ratio. The sulfonate degree were determined by ~1H NMR and proved that the sulfonate groups were quantitatively introduced to polymer chains. The tough and ductile films were obtained by solvent casting from DMAc solution, and transformed to the acid form by ion exchange in dilute sulfuric acid. The membranes of acid-form SPAENKs showed good thermal stability up to 300℃ and exhibited increasing water uptake and proton conductivity with DS, temperature and relative humidity. The heteropolyacids (HPA)/SPAENK composite membranes were also prepared by solution casting of the acid-form SPAENK with various contents of phosphotungstic acid. The transparent composite membranes and SEM images indicated the HPA particles were well dispersed within polymer matrix. The FT-IR spectrum band shift showed that the HPA particles interacted primarily with sulfonic acid groups on the polymer backbone. After introduction of HPA particles into SAPENK matrix, the thermal stability of the membrane decreased, however, the degradation temperatures of the composite membranes were above 200℃, satisfying the requirement of thermal stability for use in PEMFC. Compared with the pure SPAENK membranes, the composite membranes showed lower water sorption but higher proton conductivity. Further efforts on improving of affinity between HPA particles and SPAENK are ongoing in our group.
机译:通过将4,4'-(六氟异亚丙基)二酚与2,6-二氟苄腈和5,5'钠直接共聚,合成了一系列磺化度受控的磺化聚(亚芳基醚腈酮)(SPAENK)共聚物。 -羰基双(2-氟苯磺酸盐)的摩尔比不同。通过〜1 H NMR测定磺酸盐度,证明磺酸盐基团被定量地引入聚合物链中。通过从DMAc溶液中溶剂浇铸获得坚韧而易延展的薄膜,然后通过在稀硫酸中进行离子交换将其转化为酸形式。酸型SPAENKs的膜在300℃以下仍表现出良好的热稳定性,并且随着DS,温度和相对湿度的增加,其吸水率和质子传导率也增加。还通过溶液流延具有各种含量的磷钨酸的酸形式SPANEK制备了杂多酸(HPA)/ SPAENK复合膜。透明的复合膜和SEM图像表明HPA颗粒很好地分散在聚合物基质中。 FT-IR谱带位移表明,HPA颗粒主要与聚合物主链上的磺酸基相互作用。将HPA颗粒引入SAPENK基质后,膜的热稳定性下降,但复合膜的降解温度超过200℃,满足了PEMFC的热稳定性要求。与纯SPAENK膜相比,复合膜的吸水率较低,但质子传导率较高。我们小组正在进一步努力改善HPA颗粒与SPAENK之间的亲和力。

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