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Covalently Cross-Linked Sulfone Polybenzimidazole Membranes with Poly(Vinylbenzyl Chloride) for Fuel Cell Applications

机译:具有聚(乙烯基苄基氯氯)的共价交联砜聚苯烷膜,用于燃料电池应用

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摘要

Covalently cross-linked polymer membranes were fabricated from poly(aryl sulfone benzimidazole) (SO2PBI) and poly(vinylbenzyl chloride) (PVBCl) as electrolytes for high-temperature proton-exchange-membrane fuel cells. The cross-linking imparted organo insolubility and chemical stability against radical attack to the otherwise flexible SO2PBI membranes. Steady phosphoric acid doping of the cross-linked membranes was achieved at elevated temperatures with little swelling. The acid-doped membranes exhibited increased mechanical strength compared to both pristine SO2PBI and poly[2,2'-(m-phenylene)-5,5'-bibenzimidazole] (mPBI). The superior characteristics of the cross-linked SO2PBI membranes allowed higher acid doping levels and, therefore, higher proton conductivity. Fuel-cell tests with the cross-linked membranes demonstrated a high open circuit voltage and improved power performance and durability.
机译:将共价交联的聚合物膜由聚(芳基苯并苯并咪唑)(SO2PBI)和聚(乙烯基苄氯)(PVBCL)作为高温质子 - 交换膜燃料电池的电解质制造。 交联赋予有机体不可溶性和化学稳定性,以防止柔性SO2PBI膜的自由基攻击。 在升高的温度下溶胀,达到稳定的磷酸掺杂。 与原始SO2PBI和Poly [2,2' - (M-苯基)-5,5,5,5,5'- bibenzimidazole(MPBI)相比,酸掺杂的膜表现出增加的机械强度。 交联的SO2PBI膜的优异特性允许较高的酸掺杂水平,因此更高的质子电导率。 具有交联膜的燃料电池测试表现出高开路电压和提高的功率性能和耐用性。

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