论文标题

石墨烯基纳米容器:第一原理计算的电子,光学和热电特性

Graphenylene nanoribbons: electronic, optical and thermoelectric properties from first-principles calculations

论文作者

Meftakhutdinov, Ruslan M., Sibatov, Renat T., Kochaev, Aleksey I.

论文摘要

最近合成的二维石墨烯样材料称为石墨烯基是一种半导体,具有狭窄的直接带隙,对纳米电子应用具有很大的希望。可以通过施加到石墨烯晶体晶格的应变或使用纳米骨而不是扩展层来提供显着的带隙增加。在本文中,我们使用基于密度函数理论的计算,介绍了石墨烯纳米管的电子,光学和热电性能的系统研究。估计结合能,我们证实了纳米骨的稳定性,其曲折和扶手椅边缘被氢原子钝化。电子光谱表明所有被考虑的结构都可以归类为直接带隙半导体。吸收系数,光学传导率和复杂的折射率是通过第一原理方法和kubo-greenwood公式计算的。已经表明,石墨烯丝带有效地吸收了可见范围的电磁波。由于这种吸收,在此范围内,电导率明显增加。功绩的传输系数和热电图是通过非平衡绿色功能方法计算的。总而言之,我们讨论了在纳米电子设备中的石墨烯膜和纳米纤维的可能使用。

Recently synthesized two-dimensional graphene-like material referred to as graphenylene is a semiconductor with a narrow direct bandgap that holds great promise for nanoelectronic applications. The significant bandgap increase can be provided by the strain applied to graphenylene crystal lattice or by using nanoribbons instead of extended layers. In this paper, we present the systematic study of the electronic, optical and thermoelectric properties of graphenylene nanoribbons using calculations based on the density functional theory. Estimating the binding energies, we substantiate the stability of nanoribbons with zigzag and armchair edges passivated by hydrogen atoms. Electronic spectra indicate that all considered structures could be classified as direct bandgap semiconductors. The absorption coefficient, optical conductivity, and complex refractive index are calculated by means of the first-principles methods and the Kubo-Greenwood formula. It has been shown that graphenylene ribbons effectively absorb visible-range electromagnetic waves. Due to this absorption, the conductivity is noticeably increased in this range. The transport coefficients and thermoelectric figure of merit are calculated by the nonequilibrium Green functions method. Summarizing the results, we discuss the possible use of graphenylene films and nanoribbons in nanoelectronic devices.

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