Yuhara Junji, Shimazu Hiroki, Ito Kouichi, Ohta Akio, Araidai Masaaki, Kurosawa Masashi, Nakatake Masashi, Le Lay Guy
Graduate School of Engineering , Nagoya University , Nagoya 464-8603 , Japan.
Institute for Advanced Research , Nagoya University , Nagoya 464-8601 , Japan.
ACS Nano. 2018 Nov 27;12(11):11632-11637. doi: 10.1021/acsnano.8b07006. Epub 2018 Oct 29.
Large-scale two-dimensional sheets of graphene-like germanium, namely, germanene, have been epitaxially prepared on Ag(111) thin films grown on Ge(111), using a segregation method, differing from molecular beam epitaxy used in previous reports. From the scanning tunneling microscopy (STM) images, the surface is completely covered with an atom-thin layer showing a highly ordered long-range superstructure in wide scale. Two types of protrusions, named hexagon and line, form a (7√7 × 7√7) R19.1° supercell with respect to Ag(111), with a very large periodicity of 5.35 nm. Auger electron spectroscopy and high-resolution synchrotron radiation photoemission spectroscopy demonstrate that Ge atoms are segregated on the Ag(111) surface as an overlayer. Low-energy electron diffraction clearly shows incommensurate "(1.35 × 1.35)" R30° spots, corresponding to a lattice constant of 0.39 nm, in perfect accord with close-up STM images, which clearly reveal an internal honeycomb arrangement with corresponding parameter and low buckling within 0.01 nm. As this 0.39 nm value is in good agreement with the theoretical lattice constant of free-standing germanene, conclusively, the segregated Ge atoms with trivalent bonding in honeycomb configuration form a characteristic two-dimensional germanene-like structure.
通过一种与先前报道中使用的分子束外延不同的偏析方法,在生长于Ge(111)上的Ag(111)薄膜上外延制备了大规模的类石墨烯二维锗片,即锗烯。从扫描隧道显微镜(STM)图像可以看出,表面完全被一层原子级薄的层覆盖,该层在大范围呈现出高度有序的长程超结构。两种类型的凸起,即六边形和线状,相对于Ag(111)形成了一个(7√7 × 7√7) R19.1°的超胞,其周期性非常大,为5.35 nm。俄歇电子能谱和高分辨率同步辐射光电子能谱表明,Ge原子作为覆盖层偏析在Ag(111)表面。低能电子衍射清楚地显示出不匹配的“(1.35 × 1.35)” R30°斑点,对应于0.39 nm的晶格常数,这与近距离STM图像完全一致,STM图像清楚地揭示了内部具有相应参数的蜂窝状排列以及0.01 nm以内的低翘曲。由于这个0.39 nm的值与独立锗烯的理论晶格常数非常吻合,因此,以蜂窝状构型具有三价键合的偏析Ge原子形成了一种特征性的二维类锗烯结构。