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Cp-Graphyne: A Low-Energy Graphyne Polymorph withDouble Distorted Dirac Points

机译:Cp-Graphyne:具有以下特征的低能石墨烯多晶型物:双变形狄拉克点

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摘要

In the present investigation, we have proposed a novel form of two-dimensional (2D) carbon allotropes with the aid of first-principle density functional theory-based calculations. The carbon polymorph is mainly composed of carbon pentagons (cp) and acetylenic linkers and hence named cp-graphyne. This 2D material is energetically more preferable than the rest of the semimetals of graphyne family, including graphdiyne monolayer. Close inspection of lattice dynamics and thermal and mechanical properties demonstrates the excellent dynamic, thermal, and mechanical stabilities of cp-graphyne. Interestingly, cp-graphyne exhibits a semimetallic nature and possesses double distorted Dirac points in the electronic band spectrum. The Fermi velocities (vf) of cp-graphyne are highly anisotropic and are predicted to be in the range of 1.50–8.20 × 105 m/s. Furthermore, the analysis of structural and electronic properties of the cp-graphyne bilayer discloses the presence of self-doped Dirac-like points nearer to the Fermi level in the electronic spectrum.
机译:在本研究中,我们借助基于第一原理密度泛函理论的计算,提出了一种新型的二维(2D)碳同素异形体。碳多晶型物主要由碳五边形(cp)和炔键组成,因此称为cp-graphyne。从能量上讲,这种2D材料比石墨烯族的其余半金属(包括石墨二炔单层)更可取。对晶格动力学以及热力学性能的仔细检查表明,cp-石墨烯具有出色的动力学,热学和机械稳定性。有趣的是,cp-graphyne具有半金属性质,并且在电子能带谱中具有双畸变的狄拉克点。 cp-石墨烯的费米速度(vf)是高度各向异性的,预计范围为1.50–8.20×10 5 m / s。此外,对cp-石墨烯双层的结构和电子性质的分析揭示了在电子光谱中更接近费米能级的自掺杂狄拉克样点的存在。

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