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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >BN-Embedded Graphene with a Ubiquitous Gap Opening
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BN-Embedded Graphene with a Ubiquitous Gap Opening

机译:具有无处不在的缺口开口的BN嵌入石墨烯

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摘要

The electronic structures of BN-embedded graphene (BNG) were theoretically studied. A nonzero gap was found to exist in BNG regardless of the edge structures (zigzag/armchair) and the symmetries of the superlattice and BN quantum dots (QDs). The size of the gap is mainly determined by the width of the carbon wall between neighboring BN QDs. It is insensitive to the size of BN QDs, and thus obeys a universal scaling law. This significant and stable energy gap renders BNG as a promising way to control the electronic properties of graphene. The comparison with graphene antidot lattices and nanoribbons was also provided.
机译:理论上研究了BN嵌入石墨烯(BNG)的电子结构。发现BNG中存在非零间隙,而不管其边缘结构(之字形/扶手椅),超晶格和BN量子点(QD)的对称性如何。间隙的大小主要由相邻BN QD之间的碳壁宽度决定。它对BN QD的大小不敏感,因此服从通用缩放定律。这种明显且稳定的能隙使BNG成为控制石墨烯电子性质的一种有前途的方法。还提供了与石墨烯解毒点晶格和纳米带的比较。

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