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Mechanical and Transport Properties of Layer-by-Layer Electrospun Composite Proton Exchange Membranes for Fuel Cell Applications

机译:燃料电池用层状电纺复合质子交换膜的力学和传输性能

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Composite membranes composed of highly conductive and selective layer-by-layer (LbL) films and electrospun fiber mats were fabricated and characterized for mechanical strength and electrochemical selectivity. The LbL component consists of a proton-conducting, methanol-block-ing poly(diallyl dimethyl ammonium chloride)/sulfonated poly(2,6-dimethyl-l,4-phenylene oxide) (PDAC/sPPO) thin film. The electrospun fiber component consists of poly-(trimethyl hexamethylene terephthalamide) (PA 6(3)T) fibers in a nonwoven mat of 60—90% porosity. The bare mats were annealed to improve their mechanical properties, which improvements are shown to be retained in the composite membranes. Spray LbL assembly was used as a means for the rapid formation of proton-conducting films that fill the void space throughout the porous electrospun matrix and create a fuel-blocking layer. Coated mats as thin as 15 μm were fabricated, and viable composite membranes with methanol permeabilities 20 times lower than Nafion and through-plane proton selectivity five and a half times greater than Nafion are demonstrated. The mechanical properties of the spray coated electrospun mats are shown to be superior to the LbL-only system and possess intrinsically greater dimensional stability and lower mechanical hysteresis than Nafion under hydrated conditions. The composite proton exchange membranes fabricated here were tested in an operational direct methanol fuel cell. The results show the potential for higher open circuit voltages (OCV) and comparable cell resistances when compared to fuel cells based on Nafion.
机译:制备了由高导电性和选择性逐层(LbL)薄膜和电纺纤维毡组成的复合膜,并对其机械强度和电化学选择性进行了表征。 LbL组件由质子传导,阻隔甲醇的聚二烯丙基二甲基氯化铵/磺化聚(2,6-二甲基-1,4-苯撑氧)(PDAC / sPPO)薄膜组成。电纺纤维成分由孔隙率为60-90%的非织造垫中的聚(三甲基六亚甲基对苯二甲酸乙二酰胺)(PA 6(3)T)纤维组成。裸露的垫子经过退火处理以改善其机械性能,这些改进表明保留在复合膜中。喷涂LbL组件被用作快速形成质子传导膜的手段,该质子传导膜充满了整个多孔电纺基体的空隙并形成了燃料阻挡层。制备了厚度仅为15μm的涂层垫,并证明了可行的复合膜,其甲醇渗透率比Nafion低20倍,通透质子选择性比Nafion高五倍半。已显示,在水合条件下,喷涂的电纺垫的机械性能优于仅LbL的系统,并且本质上比Nafion具有更大的尺寸稳定性和更低的机械滞后性。此处制造的复合质子交换膜在可运行的直接甲醇燃料电池中进行了测试。结果表明,与基于Nafion的燃料电池相比,具有更高的开路电压(OCV)和可比的电池电阻的潜力。

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