论文标题

周期性石墨烯/H-BN范德华异质结构的结构,电子和光学特性

Structural, electronic, and optical properties of periodic graphene/h-BN van der Waals heterostructures

论文作者

Aggoune, Wahib, Cocchi, Caterina, Nabok, Dmitrii, Rezouali, Karim, Belkhir, Mohamed Akli, Draxl, Claudia

论文摘要

作为光电和光子学的新材料,对范德华异质结构的新兴兴趣提出了有关其稳定性和结构性关系的问题。在密度功能和多体扰动理论的框架中,我们研究了由石墨烯和六角形硝化硼(H-BN)形成的周期异质结构的结构,电子和光学特性。为了了解成分如何根据层堆叠相互影响,我们检查了12种相称的排列。我们发现,与石墨烯的相互作用也提高了大量H-BN的稳定性,也可以在那些被预测在能量稳定的构型中。作为回报,与H-BN的相互作用可以在石墨烯中打开几百MeV的带隙。它的实际尺寸可以通过层的排列来调节。在半导体配置中,光激发的特征和空间分布受到特定堆叠的影响,该特定堆叠决定了涉及过渡的电子状态。值得注意的是,在12个探索的异质结构中有6个仍然是半金属。

The emerging interest in van der Waals heterostructures as new materials for opto-electronics and photonics poses questions about their stability and structure-property relations. In the framework of density-functional and many-body perturbation theory, we investigate the structural, electronic, and optical properties of periodic heterostructures formed by graphene and hexagonal boron nitride (h-BN). To understand how the constituents affect each other depending on the layer stacking, we examine 12 commensurate arrangements. We find that interaction with graphene improves the stability of bulk h-BN also in those configurations that are predicted to be energetically metastable. In return, the interaction with h-BN can open a band gap of a few hundred meV in graphene. Its actual size can be tuned by the arrangement of the layers. In the semiconducting configurations, the character and spatial distribution of optical excitations are affected by the specific stacking, that determines the electronic states involved in the transitions. Remarkably, six out of the 12 explored heterostructures remain semi-metallic.

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