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High-performance poly(fluorenyl aryl piperidinium)-based anion exchange membrane fuel cells with realistic hydrogen supply

机译:基于高效聚(芴基芳基哌啶)的阴离子交换膜燃料电池,具有现实氢气供应

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摘要

Anion exchange membrane fuel cells (AEMFCs) have advanced rapidly in the past four years, while the majority of the state-of-the-art AEMFCs relies on unrealistic and uneconomical operating conditions, particularly a high hydrogen flow rate (1000 mL min(-1)). Here, we report a poly(fluorenyl aryl piperidinium) (PFAP) ionomer that enables high power of AEMFC with low hydrogen flow rate (= 100 mL min(-1) for 5 cm(2) cell). The high water permeability of the ionomer is beneficial to prevent anode flooding under moderate relative humidity. The relationship between hydrogen flow rate and limiting current density is revealed based on PFAP copolymers. Specifically, the peak power density of AEMFC is 1.77 W cm(-2) with a H-2 flow rate of 75 mL min(-1), retaining 70% power density from the H-2 flow rate of 1000 mL min(-1) (2.42 W cm(-2)). Importantly, the present AEMFCs display much higher hydrogen utilization efficiency above 90% and hydrogen fuel power (similar to 30 W cm(-2) L-1) than previously reported AEMFCs (30% and 0.4-3.5 W cm(-2) L-1). Moreover, the present AEMFCs show stable cell performance with a low hydrogen flow rate at 70 degrees C for 110 h.
机译:阴离子交换膜燃料电池(AEMFC)在过去四年中迅速发展,而大多数最先进的AEMFC依赖于不切实际和不经济的操作条件,特别是高氢气流速(& 1000 ml min (-1))。在此,我们报告聚(芴基芳基哌啶)(PFAP)离聚物,其使AEMFC的高功率具有低氢气流速(& = 100mL min(-1),5cm(2)细胞)。离聚物的高水渗透性有益于防止在中等相对湿度下的阳极泛滥。基于PFAP共聚物,揭示了氢气流速与限制电流密度之间的关系。具体地,AEMFC的峰值功率密度为1.77W cm(-2),H-2流速为75mL min(-1),保持& 70%的功率密度,从H-2流速为1000毫升分钟(-1)(2.42 W cm(-2))。重要的是,本发明的AEMFCS在90%以上的氢利用效率和氢燃料功率(类似于30W cm(-2)L-1)上显示比先前报告的AEMFC(<30%和0.4-3.5W厘米(-2 l-1)。此外,本AEMFCs显示出稳定的电池性能,氢气流速为70摄氏度,对于110小时。

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