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Pd nanoparticles on ZnO-passivated porous carbon by atomic layer deposition: an effective electrochemical catalyst for Li-O-2 battery

机译:原子层沉积在钝化ZnO的多孔碳上的Pd纳米粒子:一种有效的Li-O-2电池电化学催化剂

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摘要

Uniformly dispersed Pd nanoparticles on ZnO-passivated porous carbon were synthesized via an atomic layer deposition (ALD) technique, which was tested as a cathode material in a rechargeable Li-O-2 battery, showing a highly active catalytic effect toward the electrochemical reactions-in particular, the oxygen evolution reaction. Transmission electron microscopy (TEM) showed discrete crystalline nanoparticles decorating the surface of the ZnO-passivated porous carbon support in which the size could be controlled in the range of 3-6 nm, depending on the number of Pd ALD cycles performed. X-ray absorption spectroscopy (XAS) at the Pd Kedge revealed that the carbon-supported Pd existed in a mixed phase of metallic palladium and palladium oxide. The ZnO-passivated layer effectively blocks the defect sites on the carbon surface, minimizing the electrolyte decomposition. Our results suggest that ALD is a promising technique for tailoring the surface composition and structure of nanoporous supports for Li-O-2 batteries.
机译:通过原子层沉积(ALD)技术合成了在ZnO钝化的多孔碳上均匀分散的Pd纳米粒子,该技术已在可充电Li-O-2电池中作为阴极材料进行了测试,显示出对电化学反应的高活性催化作用-特别是氧气释放反应。透射电子显微镜(TEM)显示离散的晶体纳米粒子装饰了ZnO钝化的多孔碳载体的表面,其大小可以根据执行的Pd ALD循环数控制在3-6 nm范围内。 Pd Kedge的X射线吸收光谱(XAS)表明,碳载Pd以金属钯和氧化钯的混合相存在。 ZnO钝化层有效地阻塞了碳表面上的缺陷部位,从而最大程度地减少了电解质的分解。我们的结果表明,ALD是一种有前途的技术,可用于调整Li-O-2电池纳米孔载体的表面组成和结构。

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