论文标题

扭曲的双层锯齿形 - 格雷烯纳米替伯恩连接带有可调边的状态

Twisted bilayer zigzag-graphene nanoribbon junctions with tunable edge states

论文作者

Wang, Dongfei, Bao, De-Liang, Zheng, Qi, Wang, Chang-Tian, Wang, Shiyong, Fan, Peng, Mishra, Shantanu, Tao, Lei, Xiao, Yao, Huang, Li, Feng, Xinliang, Müllen, Klaus, Zhang, Yu-Yang, Fasel, Roman, Ruffieux, Pascal, Du, Shixuan, Gao, Hong-Jun

论文摘要

由于新型物理特性的出现,堆叠二维分层材料,例如石墨烯和具有非零层间扭曲角的过渡金属二核苷,最近变得有吸引力。一维纳米材料的堆叠提供侧面堆叠偏移,作为调节所得材料特性的附加参数。在这里,我们报告说,扭曲的双层锯齿烯石墨烯纳米纤维(TBZGNR)的边缘状态可以通过扭曲角度和堆叠偏移来调节。堆叠区域中强的边缘状态变化首先通过密度功能理论(DFT)计算揭示。我们使用扫描隧道显微镜在AU(111)表面上构建并表征了扭曲的双层曲线石墨烯纳米烯(TBZGNR)系统。通过扫描隧道光谱法显示出不同的堆叠偏移的三个原型正交TBZGNR连接的详细分析显示,近零能量状态的出现。从与DFT计算的比较中,我们得出结论,新兴的边缘状态源于扁平带的形成,其能量和自旋退化在堆叠偏移的情况下高度可调。我们的工作强调了2D和1D二曲,以及马刺对扭曲的一维系统的进一步研究。

Stacking two-dimensional layered materials such as graphene and transitional metal dichalcogenides with nonzero interlayer twist angles has recently become attractive because of the emergence of novel physical properties. Stacking of one-dimensional nanomaterials offers the lateral stacking offset as an additional parameter for modulating the resulting material properties. Here, we report that the edge states of twisted bilayer zigzag graphene nanoribbons (TBZGNRs) can be tuned with both the twist angle and the stacking offset. Strong edge state variations in the stacking region are first revealed by density functional theory (DFT) calculations. We construct and characterize twisted bilayer zigzag graphene nanoribbon (TBZGNR) systems on a Au(111) surface using scanning tunneling microscopy. A detailed analysis of three prototypical orthogonal TBZGNR junctions exhibiting different stacking offsets by means of scanning tunneling spectroscopy reveals emergent near-zero-energy states. From a comparison with DFT calculations, we conclude that the emergent edge states originate from the formation of flat bands whose energy and spin degeneracy are highly tunable with the stacking offset. Our work highlights fundamental differences between 2D and 1D twistronics and spurs further investigation of twisted one-dimensional systems.

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