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Adsorption Properties of the Film Formed by Gold and Copper Nanoparticles on Graphite

机译:石墨上金和铜纳米粒子形成的膜的吸附性能

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Some physicochemical properties of homogeneous and heterogeneous films formed by Au and Cu nanoparticles on graphite are studied by scanning tunneling microscopy and spectroscopy. It is found that the nanoparticles have a shape close to spherical with a diameter of 3?6 nm, the gold particles do not contain impurities, and the copper particles can be coated with oxide. The adsorption properties of nanostructured coatings with respect to hydrogen, carbon oxide, and oxygen are determined. Copper oxide is reduced by carbon oxide and hydrogen, but the latter is also adsorbed onto oxide-free copper particles and gold. Exposure to oxygen results in the reformation of the oxide on copper. The possibility of rearranging the electronic structure of copper nanoparticles during hydrogen adsorption is confirmed by the results of quantum chemical simulation.
机译:通过扫描隧道显微镜和光谱研究了由Au和Cu纳米颗粒形成的均匀和异质膜的一些物理化学性质。 发现纳米颗粒具有靠近球形的形状,其直径为3?6nm,金颗粒不含杂质,并且铜颗粒可以用氧化物涂覆。 确定了纳米结构涂层相对于氢,碳氧化碳和氧的吸附性能。 通过碳氧化物和氢气降低氧化铜,但后者也吸附在无氧化物铜颗粒和金中。 暴露于氧气导致氧化铜的重整。 通过量子化学模拟结果证实了重新排列氢吸附过程中铜纳米颗粒的电子结构的可能性。

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