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Golden Palladium Zinc Ordered Intermetallics as Oxygen Reduction Electrocatalysts

机译:金色钯锌有序的金属间金属剂作为氧气还原电催化剂

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Exploring Pt-free electrocatalysts with high activity and long durability for the oxygen reduction reaction (ORR) has been long pursued by the renewable energy materials community. In this work, we have designed an ordered intermetallic PdZn/C (O-PdZn) with a several atomic-layer Pd shell, which achieved a 3-fold enhancement in ORR mass activities (MA) in alkaline media, relative to Pd/C and Pt/C. Further Au incorporation in O-PdZn/C (Au-O-PdZn/C) yielded a catalyst with superior durability with less than 10% loss in MA after 30000 potential cycles. These effects have attributed to the rationally designed ordered structure and stabilizing effect of Au atoms. Aberration-corrected scanning transmission electron microscopy and synchrotron-based X-ray fluorescence spectroscopy were employed to show that Au not only galvanically replaced Pd and Zn on the surface but also penetrated through the PdZn lattice and distributed uniformly within the particles. Au-O-PdZn/C was also tested as an effective oxygen cathode in broad applications in rechargeable Li-air and Zn-air batteries.
机译:可再生能源材料界长期以来,探索具有高活性和长期耐久性(ORR)的无水催化剂。在这项工作中,我们设计了一种有序的金属间PDZN / C(O-PDZN),其中几种原子层PD壳,其相对于Pd / c,碱介质中的矿物质培养基(MA)中的3倍增强和pt / c。此外,Au掺入O-PdzN / C(AU-O-PDZN / C),催化剂具有优异的耐久性,在30000次潜在循环后MA的损失小于10%。这些效应归因于合理设计的订购结构和Au原子的稳定作用。采用像差校正扫描透射电子显微镜和同步辐射的X射线荧光光谱,表明Au不仅在表面上的电镀替换的Pd和Zn,而且还穿过PDZN格子并均匀地分布在颗粒内。 AU-O-PDZN / C还在可充电Li-Anive和Zn-Air电池中的广泛应用中被测试为有效的氧阴极。

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