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Bi-functional oxygen electrocatalysts based on Palladium oxide-Ruthenium oxide composites

机译:基于氧化钯氧化钌复合材料的双功能氧电催化剂

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Bi-functional oxygen electrodes are an enabling component for rechargeable metal-air batteries and regenerative fuel cells, both of which are regarded as the next-generation energy devices with zero emission. Nonetheless, at the present, no single metal oxide component can catalyze both oxygen reduction reaction (ORR) and oxygen evolution reaction (OER) with high performance which leads to large overpotential between ORR and OER. This work strives to address this limitation by studying the bi-functional electrocatalytic activity of the composite of a good ORR catalyst compound (e.g. palladium oxide, PdO) and a good OER catalyst compound (e.g. ruthenium oxide, RuO_2) in alkaline solution (0.1M KOH) utilizing a thin-film rotating disk electrode technique. The studied compositions include PdO, RuO_2, PdO/RuO_2 (25wt.%/75wt.%), PdO/RuO_2 (50wt.%/50wt.%) and PdO/RuO_2 (75wt.%/25wt.%). The lowest overpotential (e.g. E (2 mA cm~(-2)) - E (-2 mA cm~(-2))) of 0.82 V is obtained for PdO/RuO_2 (25wt.%/75wt.%) (versus Ag|AgCl (3M NaCl) reference electrode).
机译:双功能氧电极是用于可充电金属 - 空气电池和再生燃料电池的能力组件,两者都被视为具有零发射的下一代能量装置。尽管如此,目前,没有单金属氧化物组分可以催化具有高性能的氧还原反应(ORR)和氧气进化反应(OER),这导致ORR和OER之间的大量过电位。该工作致力于通过研究良好的ORR催化剂化合物(例如钯,PDO)和碱性溶液(例如氧化钌,RUO_2)的良好ORR催化剂化合物(例如氧化钯催化剂化合物(例如氧化钌,RUO_2)的双功能电催化活性来解决这种限制(0.1M KOH)利用薄膜旋转盘电极技术。研究的组合物包括PDO,RuO_2,PDO / RuO_2(25wt%/ 75wt%),PDO / RuO_2(50wt%/ 50wt。%)和PDO / Ruo_2(75wt%/ 25wt%)。获得0.82V的最低过电(例如E(2mA cm〜(-2)) - E(-2 mA cm〜(-2))为PDO / RuO_2(25wt%/ 75wt%)(与Ag | AgCl(3M NaCl)参比电极)。

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