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A highly-active, stable and low-cost platinum-free anode catalyst based on RuNi for hydroxide exchange membrane fuel cells

机译:基于氢氧化物交换膜燃料电池的润液的高活性,稳定和低成本的铂无阳极催化剂

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The development of cost-effective hydroxide exchange membrane fuel cells is limited by the lack of high-performance and low-cost anode hydrogen oxidation reaction catalysts. Here we report a Pt-free catalyst Ru7Ni3/C, which exhibits excellent hydrogen oxidation reaction activity in both rotating disk electrode and membrane electrode assembly measurements. The hydrogen oxidation reaction mass activity and specific activity of Ru7Ni3/C, as measured in rotating disk experiments, is about 21 and 25 times that of Pt/C, and 3 and 5 times that of PtRu/C, respectively. The hydroxide exchange membrane fuel cell with Ru7Ni3/C anode can deliver a high peak power density of 2.03?W?cm?2 in H2/O2 and 1.23?W?cm?2 in H2/air (CO2-free) at 95?°C, surpassing that using PtRu/C anode catalyst, and good durability with less than 5% voltage loss over 100?h of operation. The weakened hydrogen binding of Ru by alloying with Ni and enhanced water adsorption by the presence of surface Ni oxides lead to the high hydrogen oxidation reaction activity of Ru7Ni3/C. By using the Ru7Ni3/C catalyst, the anode cost can be reduced by 85% of the current state-of-the-art PtRu/C, making it highly promising in economical hydroxide exchange membrane fuel cells. Development of hydroxide exchange membrane fuel cells (HEMFCs) requires high-performance and low-cost catalysts for hydrogen oxidation reaction at the anode. Here the authors report Ru7Ni3/C as anode catalysts, delivering high power density and good durability in alkaline media for HEMFCs.
机译:经济高效的氢氧化物交换膜燃料电池的发展受到缺乏高性能和低成本阳极氧化反应催化剂的限制。在这里,我们报告了一种无水催化剂Ru7Ni3 / c,其在旋转盘电极和膜电极组件测量中具有优异的氢氧化反应活性。如在旋转盘实验中测量的氢氧化反应质量活性和Ru7Ni 3 / C的比活性分别为PT / C的Pt / C的约21%和25倍。用Ru7Ni3 / C阳极的氢氧化物交换膜燃料电池可以在H2 / O 2和1.23中的高峰值功率密度为2.03μm= 2中的高峰值功率密度。在95时,在H 2 /空气(无CO2)中的1.23℃。 °C,超越使用PTRU / C阳极催化剂,良好的耐用性,低于100μm的电压损耗小于5%。通过用Ni的合金化和通过表面Ni氧化物的存在,通过合金化和增强的水吸附的氢结合,导致Ru7Ni3 / C的高氢氧化反应活性。通过使用Ru7Ni3 / C催化剂,阳极成本可以减少目前最先进的PTRU / C的85%,使其在经济的氢氧化膜燃料电池中具有高度前景。氢氧化物交换膜燃料电池(HEMFC)的研制需要高性能和低成本催化剂在阳极处氢氧化反应。这里的作者将Ru7Ni3 / C报告为阳极催化剂,为HEMFC的碱性介质提供高功率密度和良好的耐久性。

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