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Theoretical study on electron transport properties of graphene sheets with two- and one-dimensional periodic nanoholes

机译:具有二维和一维周期性纳米孔的石墨烯片的电子输运性质的理论研究

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We study the electronic structures and the transport properties of graphene sheets having two-dimensional (2D) and one-dimensional (ID) periodic nanoholes using a first-principles method. The symmetries and periodicities of graphene with 2D periodic nanoholes are classified as metallic or semiconducting. The transport properties for ID periodic nanoholes can be understood by analogy to 2D periodic nanoholes, but the conduction gaps are smaller than those of 2D periodic nanoholes due to the absence of quantum confinement in one direction. However, when sequential zigzags lie on the hole edge, the conduction gaps become significantly wide. We also show the neck width (w) dependency of the conduction gap (E_g) of large-scale 2D periodic irregular holes for comparison with recent experiments, using the tight-binding approximation method. The value of E_g is generally inversely proportional to w, agreeing with the experiment. However, the distribution of E_g at each w is quite wide, which is attributed to the various lengths of the sequential zigzag edges. Our analysis shows that zigzag edges play a critical role in determining the conduction gaps for graphene with both 2D and ID periodic nanoholes. These conclusions are obtained on the basis of the results for nonmagnetic planar high-symmetry configurations. Although we also investigate the most stable configurations by considering magnetism and nonplanar geometries, it does not significantly affect the transport properties discussed in this paper.
机译:我们使用第一原理研究具有二维(2D)和一维(ID)周期性纳米孔的石墨烯片的电子结构和传输性能。具有二维周期性纳米孔的石墨烯的对称性和周期性被分类为金属或半导体。类似于2D周期性纳米孔,可以理解1D周期性纳米孔的传输性质,但是由于在一个方向上没有量子约束,因此其导电间隙小于2D周期性纳米孔的。但是,当连续的锯齿形排列在孔边缘时,导通间隙会明显变宽。我们还显示了大型2D周期性不规则孔的传导间隙(E_g)的颈宽(w)依赖性,以便与最近的实验进行比较,并使用紧密绑定近似方法进行比较。 E_g的值通常与w成反比,与实验一致。但是,E_g在每个w处的分布都非常宽,这是由于连续的锯齿形边缘的长度各不相同。我们的分析表明,之字形边缘在确定具有2D和1D周期性纳米孔的石墨烯的导电间隙方面起着至关重要的作用。这些结论是基于非磁性平面高对称配置的结果得出的。尽管我们还通过考虑磁性和非平面几何来研究最稳定的配置,但它不会显着影响本文讨论的传输特性。

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  • 来源
    《Physical review》 |2011年第7ptab期|p.075467.1-075467.8|共8页
  • 作者单位

    Fujitsu Laboratories Limited, 10-1 Morinosato-wakamiya, Atsugi, Kanagawa 243-0197, Japan;

    Fujitsu Laboratories Limited, 10-1 Morinosato-wakamiya, Atsugi, Kanagawa 243-0197, Japan;

    Fujitsu Laboratories Limited, 10-1 Morinosato-wakamiya, Atsugi, Kanagawa 243-0197, Japan;

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