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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Pyrochlore Zirconium Gadolinium Oxide Nanorods Composite Membrane for Suppressing the Formation of Free Radical in PEM Fuel Cell Operating Under Dry Condition
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Pyrochlore Zirconium Gadolinium Oxide Nanorods Composite Membrane for Suppressing the Formation of Free Radical in PEM Fuel Cell Operating Under Dry Condition

机译:烧纤维锆钆氧化铝纳米棒复合膜,用于抑制在干燥条件下的PEM燃料电池中自由基的形成

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A proton exchange membrane fuel cell uses perfluorosulfonic acid polymers as a proton exchange membrane but exhibits poor performance and durability under dry operating condition. Herein, we develop a composite membrane by incorporating porous inorganic filler, Zr2Gd2O7, into a perfluorosulfonic acid, Nafion. Zr2Gd2O7 nanorods (ZrGdNR) are synthesized using an electrospinning process and subsequently calcination under air atmosphere at 500 degrees C. The Nafion-ZrGdNR composite (Nafion-ZrGdNR) and NRE-212 membranes exhibit power densities of 858 and 695 mW cm(-2), respectively, at 0.6 V under 100% relative humidity at 80 degrees C. At 20% relative humidity, the maximum power density of the Nafion-ZrGdNR membrane (448 mW cm(-2)) is 3.8 times higher than that of a commercial NRE-212 membrane (119 mW cm(-2)), and moreover, the Nafion-ZrGdNR membrane exhibits a fluoride emission rate of 6.9 x 10(-5) ppm h(-1) cm(-2), which is about 240 times lower that of than the NRE-212 membrane (1670 x 10(-5) ppm h(-1) cm(-2)) for 120 h of open-circuit voltage testing. The composite membrane shows high proton conductivity, superior oxidative stability, and improved mechanical strength. The outstanding performance and remarkable durability of the Nafion-ZrGdNR membrane are due to its efficient water diffusion and stability against hydroxyl radical attack, resulting in low ohmic resistance and improved membrane degradation.
机译:质子交换膜燃料电池使用全氟磺酸聚合物作为质子交换膜,但在干燥的操作条件下表现出差的性能和耐久性。在此,我们通过将多孔无机填料,Zr2GD 2 O 7掺入全氟磺酸,Nafion中,通过将多孔无机填料Zr 2 Gd 2 O 7进行制育。使用静电纺丝工艺合成Zr2GD2O7纳米棒(ZRGDNR),随后在500摄氏度下在空气气氛下煅烧。Nafion-ZRGDNR复合物(Nafion-ZRGDNR)和NRE-212膜表现出858和695mW cm(-2)的功率密度分别在80℃的100%相对湿度下在0.6V下在20%相对湿度下,Nafion-ZRGDNR膜的最大功率密度(448mm(-2))比商业的3.8倍。 NRE-212膜(119mW cm(-2)),此外,Nafion-ZrGDNR膜表现出6.9×10(-5)ppm h(-1)cm(-2)的氟化物发射率,这是关于比NRE-212膜(1670×10( - 5)PPM H(-1)cm(-2))降低240倍,对于开路电压测试120小时。复合膜显示出高质子电导率,优异的氧化稳定性和改善的机械强度。 Nafion-ZRGDNR膜的出色性能和显着耐久性是由于其有效的水分扩散和抗羟基自由基攻击稳定性,导致耐欧耐性低和改善的膜降解。

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