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Friedel–Crafts Crosslinked Highly Sulfonated Polyether Ether Ketone (SPEEK) Membranes for a Vanadium/Air Redox Flow Battery

机译:钒/空气氧化还原液流电池的Friedel-Crafts交联高磺化聚醚醚酮(SPEEK)膜

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摘要

Highly conductive and low vanadium permeable crosslinked sulfonated poly(ether ether ketone) (cSPEEK) membranes were prepared by electrophilic aromatic substitution for a Vanadium/Air Redox Flow Battery (Vanadium/Air-RFB) application. Membranes were synthesized from ethanol solution and crosslinked under different temperatures with 1,4-benzenedimethanol and ZnCl2 via the Friedel–Crafts crosslinking route. The crosslinking mechanism under different temperatures indicated two crosslinking pathways: (a) crosslinking on the sulfonic acid groups; and (b) crosslinking on the backbone. It was observed that membranes crosslinked at a temperature of 150 °C lead to low proton conductive membranes, whereas an increase in crosslinking temperature and time would lead to high proton conductive membranes. High temperature crosslinking also resulted in an increase in anisotropy and water diffusion. Furthermore, the membranes were investigated for a Vanadium/Air Redox Flow Battery application. Membranes crosslinked at 200 °C for 30 min with a molar ratio between 2:1 (mol repeat unit:mol benzenedimethanol) showed a proton conductivity of 27.9 mS/cm and a 100 times lower VO2+ crossover compared to Nafion.
机译:通过亲电芳香族取代制备钒/空气氧化还原液流电池(钒/空气-RFB),制备了高导电性和低钒渗透性的交联磺化聚醚醚酮(cSPEEK)膜。膜是由乙醇溶液合成的,并在不同温度下通过Friedel-Crafts交联路线与1,4-苯二甲醇和ZnCl2交联。在不同温度下的交联机理表明了两种交联途径:(a)在磺酸基上交联; (b)在主链上交联。观察到在150℃的温度下交联的膜导致低质子传导膜,而交联温度和时间的增加将导致高质子传导膜。高温交联还导致各向异性和水扩散的增加​​。此外,针对钒/空气氧化还原液流电池应用对膜进行了研究。膜在200°C下交联30分钟,摩尔比为2:1(摩尔重复单元:摩尔苯二甲醇),质子电导率为27.9 mS / cm,VO 2 + 交换率低100倍与Nafion相比。

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