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A Hybrid Material Combined Copper Oxide with Graphene for an Oxygen Reduction Reaction in an Alkaline Medium

机译:碱性介质中氧化铜与石墨烯的混合材料的氧还原反应

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摘要

In this work, an electrode material based on CuO nanoparticles (NPs)/graphene (G) is developed for ORR in alkaline medium. According to the characterization of scanning electron microscope and transmission electron microscope, CuO NPs are uniformly distributed on the wrinkled G sheets. The X-ray diffraction test reveals that the phase of CuO is monoclinic. The CuO/G hybrid electrode exhibits a positive onset potential (0.8 V), high cathodic current density (3.79 × 10−5 mA/cm2) and high electron transfer number (four-electron from O2 to H2O) for ORR in alkaline media. Compared with commercial Pt/C electrocatalyst, the CuO/G electrode also shows superior fuel durability. The high electrocatalytic activity and durability are attribute to the strong coupling between CuO NPs and G nanosheets.
机译:在这项工作中,开发了基于CuO纳米粒子(NPs)/石墨烯(G)的电极材料用于碱性介质中的ORR。根据扫描电子显微镜和透射电子显微镜的特点,CuO NPs均匀地分布在起皱的G片上。 X射线衍射测试表明,CuO的相为单斜晶。 CuO / G杂化电极具有正的起始电位(0.8 V),高的阴极电流密度(3.79×10 -5 mA / cm 2 )和高的电子转移数在碱性介质中用于ORR(从O2到H2O的四电子)。与市售Pt / C电催化剂相比,CuO / G电极还显示出优异的燃料耐久性。高电催化活性和耐久性归因于CuO NP和G纳米片之间的强耦合。

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