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Beryllium and boron decoration forms planar tetracoordinate carbon strips at the edge of graphene nanoribbons

机译:铍和硼装饰在石墨烯纳米带的边缘形成平面四配位碳带

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摘要

Graphene has been viewed as one of the most promising materials in many fields. Recently, it has been found that by using Cu-decoration at the edge of zigzag graphene nanoribbons (ZGNR), a novel kind of planar tetracoordinate carbon (ptC) strip can be formed. In this paper, we investigate the edge-decoration of armchair graphene nanoribbons (AGNR) by various atom types and find that two new kinds of ptC strip can be effectively formed by using Be or B decoration. For the Be-decorated AGNR, the edge Be atoms take the form of a "zigzag-like" chain, and all the edge C atoms have a ptC nature. However, for the B-decorated AGNR, the edge B atoms form an infinite yet "fractured" chain consisting of separate B4-subunits, which results in only 50% of the edge C atoms being ptCs, in contrast with Be-decorated AGNR and Cu-decorated ZGNR. The high thermal stability of both types of ptC-based AGNR is indicated by isomeric sampling and molecular dynamics simulations.
机译:石墨烯已被视为许多领域中最有前途的材料之一。最近,已经发现通过在锯齿形石墨烯纳米带(ZGNR)的边缘处使用Cu装饰,可以形成新型的平面四配位碳(ptC)条。在本文中,我们研究了扶手椅石墨烯纳米带(AGNR)通过各种原子类型的边缘修饰,发现使用Be或B装饰可以有效地形成两种新型的ptC条。对于Be-修饰的AGNR,边缘Be原子采取“锯齿状”链的形式,并且所有边缘C原子均具有ptC性质。但是,对于B修饰的AGNR,与B修饰的AGNR和B相比,边缘B原子形成由单独的B4-亚基组成的无限而又“断裂”的链,导致仅50%的边缘C原子为ptC。铜装饰的ZGNR。异构体采样和分子动力学模拟表明了两种基于ptC的AGNR的高热稳定性。

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