首页> 中文期刊> 《物理学报》 >β石墨炔衍生物结构稳定性及电子结构的密度泛函理论研究∗

β石墨炔衍生物结构稳定性及电子结构的密度泛函理论研究∗

         

摘要

Due to the diversified atomic structures and electronic properties, two-dimensional monolayer nanocarbon materials (graphyne or graphdiyne) composed of sp and sp2 hybridization C atoms have received the widespread attention in recent years. The fundamental questions include how the sp orbital hybridization affects the electronic structure of graphyne. In order to investigate the structure dependent electronic structures of graphyne, the energetic stabilities and electronic structures of β-graphyne and its derivatives (β-N ) with N carbon atoms on each edge of the hexagons are investigated by density functional theory (DFT) calculations in this work. In our DFT calculations we adopt generalized gradient approximation of Perdew, Burke, and Ernzerhof (GGA-PBE) using the CASTEP module implemented in Materials Studio. The studied β-N s consist of hexagon carbon rings connected by vertexes whose edges have various numbers of carbon atoms N = 1–10. The structure and energy analyses show that β-N s with even-numbered carbon chains have alternating single and triple C—C bonds, energetically more stable than those with odd-numbered carbon chains possessing continuous C—C double bonds. The calculated electronic structures indicate thatβ-N s can be either metallic (odd N ) or semiconductive (even N ), depending on the parity of number of hexagon edge atoms regardless of the edge length due to Jahn-Teller distortion effect. Some semiconductingβ-graphyne derivatives (β-N , N =2, 6, 10) are found to possess Dirac cones (DC) with small direct band gaps 10 meV and large electron velocities 0.255 × 106–0.414 × 106 m/s,∼30%–50%of that of graphene. We find that Dirac cones also appear inβ-3 andβ-4 when we shorten the double bonds and elongate the triple bonds in β-3 and β-4 respectively. These results show that the bond length change will affect the characteristics of band structure and suggests that the band structure characteristics may be influenced by Peierls distortion in a two-dimensional system. Our DFT studies indicate that introducing sp carbon atoms into the hexagon edges of graphene opens the way to switching between metallic and semiconductor/DC electronic structures via tuning the parity of the number of hexagon edge atoms without doping and defects in nanocarbon materials and nanoelectronic devices.

著录项

  • 来源
    《物理学报》 |2016年第13期|133101-1-133101-9|共9页
  • 作者单位

    东北大学材料科学与工程学院;

    材料物理与化学研究所;

    沈阳 110819;

    上海大学物理系;

    材料基因组工程研究院和量子与分子结构国际中心;

    上海 200444;

    沈阳理工大学理学院;

    沈阳 110159;

    上海大学物理系;

    材料基因组工程研究院和量子与分子结构国际中心;

    上海 200444;

    上海理工大学材料科学与工程学院;

    上海 200093;

    上海理工大学材料科学与工程学院;

    上海 200093;

    东北大学材料科学与工程学院;

    材料物理与化学研究所;

    沈阳 110819;

    上海大学物理系;

    材料基因组工程研究院和量子与分子结构国际中心;

    上海 200444;

    上海理工大学材料科学与工程学院;

    上海 200093;

    上海理工大学材料科学与工程学院;

    上海 200093;

    上海理工大学材料科学与工程学院;

    上海 200093;

    上海大学物理系;

    材料基因组工程研究院和量子与分子结构国际中心;

    上海 200444;

    东北大学材料科学与工程学院;

    材料物理与化学研究所;

    沈阳 110819;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类
  • 关键词

    石墨炔; 狄拉克锥; 密度泛函理论计算; sp/sp2杂化炭材料;

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