论文标题

用二维三角晶格设计Xenes

Designing Xenes with Two-Dimensional Triangular Lattice

论文作者

Duan, Xu, Liu, Zhao, Hanrahan, Brendan M., Zhu, Wei, Liu, Shi

论文摘要

Xenes是用蜂窝状对称性的石墨烯样二维(2D)单元素晶体,一直是许多实验和理论研究的重点。相比之下,具有三角形晶格对称性的单元素2D材料尚未得到适当的关注。在这里,以PB为例,我们研究了采用第一原理密度功能理论计算的组IV原子制成的三角形晶格单层。在没有旋转轨道耦合(SOC)的情况下,扁平的PB单层支撑一个受镜像保护的无自旋淋巴结线。平面外屈曲的引入产生了滑行镜,保护了各向异性的Dirac节点环。包括SOC在内后,平坦和屈曲的PB单层在拓扑上都变得琐碎。一个大屈曲将使PB板成为2D半导体,其受对称保护点以下的越野点以下。 GE和SN等其他组IV三角形晶格的电子结构表现出与PB的强相似性。我们进一步设计了一个准3D水晶PBHFO $ _2 $,交替堆叠PB和1T-HFO $ _2 $单层。新的化合物PBHFO $ _2 $是动态稳定的,并保留了PB单层的属性。通过将外延菌株应用于pbhfo $ _2 $,可以驱动与金属过渡,并与抗feleleelectric-paraelectric相变相结合。我们的结果表明,2D三角晶格是设计新型宽定义Xenes的免费平台的潜力。

Xenes, graphene-like two-dimensional (2D) monoelemental crystals with a honeycomb symmetry, have been the focus of numerous experimental and theoretical studies. In comparison, single-element 2D materials with a triangular lattice symmetry have not received due attention. Here, taking Pb as an example, we investigate the triangular-lattice monolayer made of group-IV atoms employing first-principles density functional theory calculations. The flat Pb monolayer supports a mirror-symmetry-protected spinless nodal line in the absence spin-orbit coupling (SOC). The introduction of an out-of-plane buckling creates a glide mirror, protecting an anisotropic Dirac nodal loop. Both flat and buckled Pb monolayers become topologically trivial after including SOC. A large buckling will make the Pb sheet a 2D semiconductor with symmetry-protected Dirac points below the Fermi level. The electronic structures of other group-IV triangular lattices such as Ge and Sn demonstrate strong similarity to Pb. We further design a quasi-3D crystal PbHfO$_2$ by alternately stacking Pb and 1T-HfO$_2$ monolayers. The new compound PbHfO$_2$ is dynamically stable and retains the properties of Pb monolayer. By applying epitaxial strains to PbHfO$_2$, it is possible to drive an insulator-to-metal transition coupled with an anti-ferroelectric-to-paraelectric phase transition. Our results suggest the potential of the 2D triangular lattice as a complimentary platform to design new type of broadly-defined Xenes.

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