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A high-performance, bifunctional oxygen electrode catalysed with palladium and nickel-iron hexacyanoferrate

机译:用钯和六氰基铁酸镍铁催化的高性能双功能氧电极

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摘要

The development of air-breathing cathodes, which utilise atmospheric oxygen, enables the construction of lightweight, high energy density metal-air batteries and fuel cells. Air electrodes can be very lightweight and thin because the active material, oxygen, does not need to be stored inside the cell. However, air electrodes are restricted by poor reaction kinetics and low activity of many catalysts towards the oxygen evolution and reduction reactions. In addition, it is a challenge to maintain chemical and mechanical stability of the catalyst and supporting materials at oxidising currents under the strong alkaline conditions commonly used,and gas evolution. This paper reports a novel bifunctional oxygen electrode with remarkable stability, able to perform at current densities up to 1,000 mA cm-2 and withstand 3,000 cycles continuously. The electrode is catalysed by a mixture of Pd/C and mixed nickel-iron hexocyanoferrate, which have high activities towards the ORR and OER reactions, respectively.
机译:利用大气中氧气的空气呼吸阴极的发展使轻质,高能量密度的金属空气电池和燃料电池的构造成为可能。空气电极可以非常轻且薄,因为不需要将活性物质氧气存储在电池内部。然而,空气电极受到不良的反应动力学和许多催化剂对氧释放和还原反应的低活性的限制。另外,在常用的强碱性条件下,在氧化电流下保持催化剂和载体材料的化学和机械稳定性以及气体逸出也是一个挑战。本文报道了一种新型的双功能氧电极,具有出色的稳定性,能够在高达1000 mA cm-2的电流密度下运行,并连续承受3,000个循环。电极由Pd / C和混合的六价铁氰化铁镍合金混合而成,它们分别对ORR和OER反应具有高活性。

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