石墨烯
带隙
Dirac(视频压缩格式)
材料科学
电子能带结构
半导体
碳纤维
晶体结构
拓扑(电路)
密度泛函理论
半金属
Crystal(编程语言)
电子结构
纳米技术
凝聚态物理
光电子学
物理
量子力学
计算机科学
结晶学
数学
化学
组合数学
复合材料
复合数
中微子
程序设计语言
作者
Patrick Serafini,Alberto Milani,Davide Μ. Proserpio,Carlo S. Casari
标识
DOI:10.1021/acs.jpcc.1c04238
摘要
Designing new 2D systems with tunable properties is an important subject for science and technology. Starting from graphene, we developed an algorithm to systematically generate 2D carbon crystals belonging to the family of graphdiynes (GDYs) and having different structures and sp/sp2 carbon ratio. We analyze how structural and topological effects can tune the relative stability and the electronic behavior, to propose a rationale for the development of new systems with tailored properties. A total of 26 structures have been generated, including the already known polymorphs such as α-, \b{eta}- and γ-GDY. Periodic density functional theory calculations have been employed to optimize the 2D crystal structures and to compute the total energy, the band structure, and the density of states. Relative energies with respect to graphene have been found to increase when the values of carbon sp/sp2 ratio increase, following however different trends based on the peculiar topologies present in the crystals. These topologies also influence the band structure giving rise to semiconductors with a finite bandgap, zero-gap semiconductors displaying Dirac cones, or metallic systems. The different trends allow identifying some topological effects as possible guidelines in the design of new 2D carbon materials beyond graphene.
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