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A nanostructured bifunctional Pd/C gas-diffusion electrode for metal-air batteries

机译:用于金属 - 空气电池的纳米结构双功能pd / C气体扩散电极

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摘要

Designing a bifunctional air electrode which catalyses both the oxygen reduction and oxygen evolution reactions is an essential part of progress towards fully rechargeable metal-air batteries, such as the iron-air battery which is environmentally friendly, low cost, and does not suffer risk of thermal runaway like lithium-ion batteries. This paper reports the development of a lightweight carbon-based bifunctional air electrode, catalysed by a small (0.5 mg cm-2) loading of 30 wt.% palladium on carbon. The Pd-catalysed air electrode showed good bifunctional activity, with 0.53 V potential difference between oxygen reduction and evolution. The Pd/C air electrode showed improved catalytic activity at high current densities (≥ 50 mA cm-2) and enhanced durability compared with two commercial Pt/C air electrodes produced by Gaskatel GmbH and Johnson Matthey. A stable oxygen evolution potential was maintained over 1,000 charge-discharge cycles.
机译:设计一种既能催化氧气还原反应又能催化氧气释放反应的双功能空气电极,是向完全可充电的金属空气电池(例如,环保,低成本且不会遭受风吹袭的铁空气电池)发展的重要组成部分。像锂离子电池那样的热失控。本文报道了轻量碳​​基双功能空气电极的开发,该电极由少量(0.5 mg cm-2)的碳载有30 wt。%的钯催化。钯催化的空气电极显示出良好的双功能活性,氧还原和放出之间的电位差为0.53V。与由Gaskatel GmbH和Johnson Matthey生产的两种商用Pt / C空气电极相比,Pd / C空气电极在高电流密度(≥50 mA cm-2)时表现出改进的催化活性,并具有增强的耐久性。在1,000次充放电循环中,维持了稳定的析氧电势。

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