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Self-assembly Proton Exchange Membranes for Direct Methanol Fuel Cell with Size-controlled Au Nanoparticles

机译:用于直接甲醇燃料电池的自组装质子交换膜,具有尺寸控制的Au纳米粒子

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Charged Au nanoparticles with various diameters, from 2.7 nm to 10.3 nm, were synthesized by using various reducing agents. Then charged Au nanoparticles were self-assembled onto the NafionTM membrane surface as methanol barriers. It was found that the proton exchange membrane self-assembled with 3.9 nm Au particles had the lowest methanol crossover. The proton conductivity decreased with the increase of the particles size until the particles size was more than 6.2 nm and they had little influence on the membrane conductivity. All the self-assembled membranes have higher open circuit voltage (OCV) and performance than original Nafion212TM membrane. And the membranes self-assembled with 3.9 nm poly (diallymethylammonium chloride) (PDDA) modified Au (PDDA-Au) particles had the highest performance due to the reciprocal of the methanol permeation current density and membrane area resistance.
机译:通过使用各种还原剂合成具有27nm至10.3nm的各种直径的带电Au纳米颗粒。然后将带电的Au纳米颗粒自组装到Nafiontm膜表面上作为甲醇屏障。结果发现,用3.9nm颗粒自组装的质子交换膜具有最低甲醇的交叉。通过颗粒尺寸的增加,质子电导率降低,直到颗粒尺寸大于6.2nm,并且它们对膜导率几乎没有影响。所有自组装膜都具有较高的开路电压(OCV)和比原始NAFION212TM膜的性能更高。并且用3.9nm聚(二甲基氯化铵)(PDDA)改性的Au(PDDA-Au)颗粒自组装的膜具有最高的性能,这是甲醇渗透电流密度和膜面积抗性的倒数。

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