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Growth of Pd Nanoclusters on Single-Layer Graphene on Cu(111)

机译:Cu(111)上单层石墨烯的PD纳米能器的生长(111)

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摘要

We report scanning tunneling microscopy results on the nucleation and growth of Pd nanoclusters on a single layer of graphene on the Cu(111) surface. The shape, organization, and structural evolution of the Pd nanoclusters were investigated using two different growth methods, continuous and stepwise. The size and shape of the formed nanoclusters were found to greatly depend on the growth technique used. The size and density of spherical Pd nanoclusters increased with increasing coverage during stepwise deposition as a result of coarsening of existing clusters and continued nucleation of new clusters. In contrast, continuous deposition gave rise to well-defined triangular Pd clusters as a result of anisotropic growth on the graphene surface. Exposure to ethylene caused a decrease in the size of the Pd clusters. This is attributed to the exothermic formation of ethylidyne on the cluster surfaces and an accompanying weakening of the Pd–Pd bonding.
机译:我们报告扫描隧道显微镜结果导致Pd纳米能器在Cu(111)表面上的单层石墨烯上的成核和生长。 使用两种不同的生长方法,连续和逐步研究PD纳米能器的形状,组织和结构演化。 发现形成的纳米能器的尺寸和形状大大取决于所用的生长技术。 球形Pd纳米团簇的尺寸和密度随着逐步沉积期间的覆盖率而增加,由于现有簇的粗化和新簇的持续成颗成核。 相反,由于石墨烯表面上各向异性生长,连续沉积产生良好定义的三角形PD簇。 暴露于乙烯导致PD簇的大小的减少。 这归因于群体表面上的乙基乙基和PD-PD键合的伴随的弱化形成。

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