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二维蜂窝状硼烯氧化物:强烈的各向异性和节点环转变。

Two-dimensional honeycomb borophene oxide: strong anisotropy and nodal loop transformation.

机构信息

Institute for Advanced Study, Chengdu University, Chengdu 610106, China.

出版信息

Nanoscale. 2019 Jan 31;11(5):2468-2475. doi: 10.1039/c8nr08729f.

Abstract

The search for topological semimetals is mainly focused on heavy-element compounds by following the footsteps of previous research on topological insulators, with less attention on light-element materials. However, the negligible spin orbit coupling with light elements may turn out to be beneficial for realizing topological band features. Here, using first-principles calculations, we propose a new two-dimensional light-element material-the honeycomb borophene oxide (h-B2O), which has nontrivial topological properties. The proposed structure is based on the recently synthesized honeycomb borophene on an Al (111) substrate [W. Li, L. Kong, C. Chen, J. Gou, S. Sheng, W. Zhang, H. Li, L. Chen, P. Cheng and K. Wu, Sci. Bull., 2018, 63, 282-286]. The h-B2O monolayer is completely flat, unlike the oxides of graphene or silicene. We systematically investigate the structural properties of h-B2O, and find that it has very good stability and exhibits significant mechanical anisotropy. Interestingly, the electronic band structure of h-B2O hosts a nodal loop centered around the Y point in the Brillouin zone, protected by the mirror symmetry. Furthermore, under moderate lattice strain, the single nodal loop can be transformed into two loops, each penetrating through the Brillouin zone. The loops before and after the transition are characterized by different [Doublestruck Z] × [Doublestruck Z] topological indices. Our work not only predicts a new two-dimensional material with interesting physical properties, but also offers an alternative approach to search for new topological phases in 2D light-element systems.

摘要

拓扑半金属的研究主要集中在重元素化合物上,遵循了之前拓扑绝缘体研究的脚步,而对轻元素材料的关注较少。然而,轻元素的可忽略的自旋轨道耦合可能有利于实现拓扑能带特征。在这里,我们使用第一性原理计算,提出了一种新的二维轻元素材料——蜂窝状硼烯氧化物(h-B2O),它具有非平凡的拓扑性质。所提出的结构基于最近在 Al(111)衬底上合成的蜂窝状硼烯[W. Li, L. Kong, C. Chen, J. Gou, S. Sheng, W. Zhang, H. Li, L. Chen, P. Cheng and K. Wu, Sci. Bull., 2018, 63, 282-286]。h-B2O 单层是完全平坦的,不像石墨烯或硅烯的氧化物。我们系统地研究了 h-B2O 的结构性质,发现它具有非常好的稳定性,并表现出显著的力学各向异性。有趣的是,h-B2O 的电子能带结构在布里渊区的 Y 点处存在一个以节点为中心的环形结构,受到镜像对称的保护。此外,在适度的晶格应变下,单个节点环可以转化为两个环,每个环贯穿布里渊区。转变前后的环具有不同的[Doublestruck Z]×[Doublestruck Z]拓扑指数特征。我们的工作不仅预测了一种具有有趣物理性质的新型二维材料,而且为在二维轻元素体系中寻找新的拓扑相提供了一种替代方法。

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