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首页> 外文期刊>Journal of Physics. Condensed Matter >Local electronic structure, work function, and line defect dynamics of ultrathin epitaxial ZnO layers on a Ag(111) surface
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Local electronic structure, work function, and line defect dynamics of ultrathin epitaxial ZnO layers on a Ag(111) surface

机译:AG(111)表面上超薄外延ZnO层的本地电子结构,工作功能和线缺陷动态

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摘要

Using combined low-temperature scanning tunneling microscopy and Kelvin probe force microscopy we studied the local electronic structure and work function change of the (0001)-oriented epitaxial ZnO layers on a Ag(111) substrate. Scanning tunneling spectroscopy (STS) revealed that the conduction band minimum monotonically downshifts as the number of the ZnO layers increases up to 4 monolayers (ML). However, it was found by field emission resonance (FER) spectroscopy that the local work function of Ag(111) slightly decreases for 2 ML thick ZnO but it dramatically changes and drops by about 1.2eV between 2 and 3 ML, suggesting a structural transformation of the ZnO layer. The spatial variation of the conduction band minimum and the local work function change were visualized at the nanometer scale by mapping the STS and FER intensities. Furthermore, we found that the ZnO layers contained line defects with a few tens of nm long, which can be removed by the injection of a tunneling electron into the conduction band.
机译:使用组合的低温扫描隧道显微镜和开尔文探针力显微镜,我们研究了AG(111)衬底上的(0001)的外延ZnO层的本地电子结构和工作功能变化。扫描隧道光谱(STS)显示,随着ZnO层的数量增加至4单层(M1),导通带最小单调降低。然而,通过场发射共振(FER)光谱法发现,Ag(111)的局部功函数略微降低2mL厚的ZnO,但它在2到3毫升之间大大变化并下降约1.2EV,表明结构转变ZnO层。通过映射STS和FER强度,在纳米级中可视化导通带最小和局部功函数变化的空间变化。此外,我们发现ZnO层包含几十个长的线缺陷,可以通过将隧道电子注入导通带中除去。

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