论文标题

Moiré超级晶格的直接成像和电子结构调制在2D/3D界面

Direct Imaging and Electronic Structure Modulation of Moiré Superlattices at the 2D/3D Interface

论文作者

Reidy, Kate, Varnavides, Georgios, Thomsen, Joachim Dahl, Kumar, Abinash, Pham, Thang, Blackburn, Arthur M., Anikeeva, Polina, Narang, Prineha, LeBeau, James M., Ross, Frances M.

论文摘要

二维(2D)和三维(3D)材料之间界面处的原子结构会影响诸如接触电阻,光电响应和高频电性能之类的特性。 Moiré工程尚未用于调整此2D/3D接口,尽管它成功地在2D/2D接口处启用了相关的物理。使用外上了对齐的MOS2/AU {111}作为模型系统,我们证明了在2D/3D接口处的晶体图32晶体学上的几何卷积技术的使用中使用了与几何卷积技术结合使用。这个Moiré时期通常隐藏在常规的电子显微镜中,在投影中可以看到AU结构。我们通过从头算电子结构计算显示,根据Moiré时期调制电荷密度,这说明了2D/3D接口处的(Opto-)电子Moiré工程的潜力。我们的工作提出了一种使用这种新兴显微镜技术的组合在接口处直接对周期调制进行图像定期调制的一般途径。

The atomic structure at the interface between two-dimensional (2D) and three-dimensional (3D) materials influences properties such as contact resistance, photo-response, and high-frequency electrical performance. Moiré engineering is yet to be utilized for tailoring this 2D/3D interface, despite its success in enabling correlated physics at 2D/2D interfaces. Using epitaxially aligned MoS2/Au{111} as a model system, we demonstrate the use of advanced scanning transmission electron microscopy (STEM) combined with a geometric convolution technique in imaging the crystallographic 32 A moiré pattern at the 2D/3D interface. This moiré period is often hidden in conventional electron microscopy, where the Au structure is seen in projection. We show, via ab initio electronic structure calculations, that charge density is modulated according to the moiré period, illustrating the potential for (opto-)electronic moiré engineering at the 2D/3D interface. Our work presents a general pathway to directly image periodic modulation at interfaces using this combination of emerging microscopy techniques.

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