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新发现的具有罕见且稳定狄拉克节点环的石墨炔同素异形体。

Newly discovered graphyne allotrope with rare and robust Dirac node loop.

作者信息

Yan Pinglan, Ouyang Tao, He Chaoyu, Li Jin, Zhang Chunxiao, Tang Chao, Zhong Jianxin

机构信息

Hunan Key Laboratory for Micro-Nano Energy Materials and Device, Xiangtan University, Xiangtan 411105, Hunan, China.

出版信息

Nanoscale. 2021 Feb 14;13(6):3564-3571. doi: 10.1039/d0nr08397f. Epub 2021 Feb 1.

Abstract

Two-dimensional (2D) carbon allotropes with topologically nontrivial states are drawing considerable attention owing to their unique physical properties and great potential applications in the next generation of micro-nano devices. In contrast to the numerous Dirac points predicted in 2D carbon allotropes, systems featuring Dirac nodal lines (loops) are still quite rare. Here, by means of first-principles calculation, we report our newly discovered carbon monolayer 123-E8Y24-1 with robust Dirac nodal line states, which possesses a tetragonal lattice with P4/mmm symmetry and contains 8 sp carbon atoms (graphene: E8) and 24 sp carbon atoms (grapheyne: Y24) in the crystalline cell. This 2D material is as energetically stable as the recently experimentally synthesized β-graphdiyne, and it is further predicted to be dynamically, mechanically, and also thermodynamically stable. Owing to its intrinsic geometric characteristics, 123-E8Y24-1 also exhibits obvious Young's modulus anisotropy, with a sizable ratio between the maximum and minimum value of up to 5.8. Remarkably, 123-E8Y24-1 presents a semimetal nature and possesses Dirac nodal line states in the electronic band structure, and such behavior could be kept well under external strain between -10.0% and 8.0%. The electronic properties of 123-E8Y24-1 can be carefully confirmed by constructing a tight-binding (TB) model. The findings presented in this paper reveal a novel 2D Dirac nodal loop carbon sheet, providing a new candidate for carbon-based high-speed electronic devices.

摘要

具有拓扑非平凡态的二维(2D)碳同素异形体因其独特的物理性质以及在下一代微纳器件中的巨大潜在应用而备受关注。与二维碳同素异形体中预测的众多狄拉克点不同,具有狄拉克节线(环)的体系仍然相当罕见。在此,通过第一性原理计算,我们报道了新发现的具有稳健狄拉克节线态的碳单层123 - E8Y24 - 1,其具有P4/mmm对称性的四方晶格,晶胞中包含8个sp碳(石墨烯:E8)原子和24个sp碳(石墨炔:Y24)原子。这种二维材料在能量上与最近实验合成的β - 石墨二炔一样稳定,并且进一步预测其在动力学、力学和热力学上都是稳定的。由于其固有的几何特征,123 - E8Y24 - 1还表现出明显的杨氏模量各向异性,其最大值与最小值之间的比例高达5.8。值得注意的是,123 - E8Y24 - 1呈现出半金属性质,并且在电子能带结构中具有狄拉克节线态,并且这种行为在 - 10.0%至8.0%的外部应变下能够很好地保持。1,2,3 - E8Y24 - 1的电子性质可以通过构建紧束缚(TB)模型来仔细确认。本文的研究结果揭示了一种新型的二维狄拉克节环碳片,为碳基高速电子器件提供了一种新的候选材料。

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