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Two-dimensional semiconducting nanostructures based on single graphene sheets with lines of adsorbed hydrogen atoms

机译:基于单个石墨烯片并带有吸附氢原子线的二维半导体纳米结构

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It is shown that lines of adsorbed hydrogen pair atoms divide the graphene sheet into strips and form hydrogen-based superlattice structures (2HG-SL). We show that the formation of 2HG-SL changes the electronic properties of graphene from semimetal to semiconductor. The electronic spectra of "zigzag" (n,0) 2HG-SL is similar to that of (n,0) carbon nanotubes and have a similar oscillation of band gap with n, but with nonzero minimal values. The composite dual-periodic (n,0) + (w,0) 2HG-SLs of zigzag strips are analyzed, with the conclusion that they may be treated as quasi-two-dimensional heterostructures.
机译:结果表明,吸附的氢对原子的线将石墨烯片分成条带,并形成基于氢的超晶格结构(2HG-SL)。我们表明,2HG-SL的形成将石墨烯的电子性质从半金属变为半导体。 “之字形”(n,0)2HG-SL的电子光谱与(n,0)碳纳米管的电子光谱相似,并且具有与n相似的带隙振荡,但最小值不为零。分析了曲折带的复合双周期(n,0)+(w,0)2HG-SLs,得出的结论是它们可以被视为准二维异质结构。

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