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Pulsed laser deposition of two-dimensional ZnO nanocrystals on Au(111): growth, surface structure and electronic properties

机译:在Au(111)上的二维ZnO纳米晶体的脉冲激光沉积:生长,表面结构和电子性质

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摘要

Two-dimensional (2D) ZnO structures have been deposited on the Au(111) surface by means of the pulsed laser deposition technique. In situ scanning tunneling microscopy and scanning tunneling spectroscopy measurements have been performed to characterize morphological, structural and electronic properties of 2D ZnO at the nanoscale. Starting from a sub-monolayer coverage, we investigated the growth of ZnO, identifying different atomic layers (up to the fifth). At low coverage, we observed single-and bi-layer nanocrystals, characterized by a surface moire pattern that is associated to a graphene-like ZnO structure. By increasing the coverage, we revealed a morphological change starting from the fourth layer, which was attributed to a transition toward a bulk-like structure. Investigation of the electronic properties revealed the semiconducting character of 2D ZnO. We observed a dependence of the density of states (DOS) and, in particular, of the conduction band (CB) on the ZnO thickness, with a decreasing of the CB onset energy for increasing thickness. The CB DOS of 2D ZnO shows a step-like behaviour which may be interpreted as due to a 2D quantum confinement effect in ZnO atomic layers.
机译:二维(2D)ZnO结构已通过脉冲激光沉积技术沉积在Au(111)表面上。已经进行了原位扫描隧道显微镜和扫描隧道光谱测量,以表征纳米级二维ZnO的形态,结构和电子性质。从亚单层覆盖开始,我们研究了ZnO的生长,确定了不同的原子层(直至第五层)。在低覆盖率下,我们观察到了单层和双层纳米晶体,其特征是表面波纹图案与石墨烯状ZnO结构相关。通过增加覆盖率,我们发现了从第四层开始的形态变化,这归因于向块状结构的过渡。电子性质的研究揭示了二维ZnO的半导体特性。我们观察到状态密度(DOS),尤其是导带(CB)对ZnO厚度的依赖性,随着CB起始能量的降低,厚度会增加。 2D ZnO的CB DOS表现出阶梯状的行为,这可以解释为归因于ZnO原子层中的2D量子限制效应。

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