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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >New nanoporous graphyne monolayer as nodal line semimetal: Double Dirac points with an ultrahigh Fermi velocity
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New nanoporous graphyne monolayer as nodal line semimetal: Double Dirac points with an ultrahigh Fermi velocity

机译:新的纳米孔Graphyne Monolayer作为节点线性半球形:双Dirac点,具有超高保熔丝速度

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Two-dimensional (2D) carbon materials play an important role in nanomaterials. We propose a new carbon monolayer, named hexagonal-4,4,4-graphyne (H-4,H-4,H-4-graphyne), which is a nanoporous structure composed of rectangular carbon rings and triple bonds of carbon. Using first-principles calculations, we systematically studied the structure, stability, and band structure of this new material. We found that its total energy is lower than that of experimentally synthesized beta-graphdiyne and it is stable at least up to 1500 K. In contrast to the single Dirac point band structure of other 2D carbon monolayers, the band structure of H-4,H-4,H-4-graphyne exhibits double Dirac points along the high-symmetry points and the corresponding Fermi velocities (1.04-1.27 x 10(6) m/s) are asymmetric and higher than that of graphene. The origin of these double Dirac points is traced back to the nodal line states, which can be well explained by a tight-binding model. The H-4,H-4,H-4-graphyne forms a moire superstructure when placed on top of a hexagonal boron nitride substrate. These properties make H-4,H-4,H-4-graphyne a promising semimetal material for applications in high-speed electronic devices. (C) 2018 Elsevier Ltd. All rights reserved.
机译:二维(2D)碳材料在纳米材料中起重要作用。我们提出了一种新的碳单层,名为六边形-4,4,4-石墨尼(H-4,H-4,H-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-张。。使用第一原理计算,我们系统地研究了这种新材料的结构,稳定性和带结构。我们发现,其总能量低于实验合成的β-graphdiyne,并且它稳定至少高达1500克。与其他2D碳单层的单个DIRAC点结构相比,H-4的带状结构相反, H-4,H-4-Graphyne沿着高对称点展示双Dirac点,相应的费米速度(1.04-1.27 x 10(6)m / s)不对称,高于石墨烯。这些双极点的起源追溯到节点线状态,这可以通过紧密结合模型进行很好的解释。当放置在六边形氮化硼衬底的顶部上时,H-4,H-4,H-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4-4。这些属性使H-4,H-4,H-4-Graphyne成为高速电子设备中应用的有希望的半型材料。 (c)2018年elestvier有限公司保留所有权利。

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