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Moiré superstructures of graphene on faceted nickel islands

机译:刻面镍岛上石墨烯的莫尔超结构

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Using scanning tunneling microscopy and spectroscopy, in combination with density functional theory calculations, we investigated the morphology and electronic structure of monolayer graphene grown on the (111) and (110) facets of three-dimensional nickel islands on highly oriented pyrolytic graphite substrate. We observed graphene domains exhibiting hexagonal and striped moiré patterns with periodicities of 22 and 12 ?, respectively, on (111) and (110) facets of the Ni islands. Graphene domains are also observed to grow, as single crystals, across adjacent facets and over facet boundaries. Scanning tunneling spectroscopy data indicate that the graphene layers are metallic on both Ni(111) and Ni(110), in agreement with the calculations. We attribute this behavior to a strong hybridization between the d-bands on Ni and the π-bands of carbon. Our findings point to the possibility of preparing large-area epitaxial graphene layers even on polycrystalline Ni substrates.
机译:使用扫描隧道显微镜和光谱学,结合密度泛函理论计算,我们研究了在高度取向的热解石墨衬底上的三维镍岛的(111)和(110)面上生长的单层石墨烯的形态和电子结构。我们观察到在Ni岛的(111)和(110)面上,石墨烯域分别呈现出周期为22和12?的六边形和条纹莫尔图案。还观察到石墨烯域以单晶的形式生长在相邻的晶面上和晶面边界上。扫描隧道光谱数据表明,与计算结果一致,石墨烯层在Ni(111)和Ni(110)上均为金属。我们将此行为归因于Ni上的d谱带与碳的π谱带之间的强杂交。我们的发现指出即使在多晶Ni衬底上也可以制备大面积外延石墨烯层。

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