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首页> 外文期刊>Physics Letters, A >Electronic and magnetic properties of zigzag edge graphene nanoribbons with Stone-Wales defects
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Electronic and magnetic properties of zigzag edge graphene nanoribbons with Stone-Wales defects

机译:具有Stone-Wales缺陷的锯齿形边缘石墨烯纳米带的电子和磁性

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摘要

The electronic and magnetic properties of zigzag graphene nanoribbons (ZGNRs) with Stone-Wales defects are studied by extensive first-principles calculations. It is shown that the asymmetry distribution of the Stone-Wales defects can induce finite magnetic moment in the defective ZGNRs. As the defect near one of the ribbon edges moving to the centre region, the magnetic moment of the defective ZGNRs gradually decreases to zero, following a transition from metal to semi-half-metal and eventually to semiconductor. In addition, by symmetrically placing an additional defect at the opposite side of the defective ZGNRs, the finite magnetic moment vanishes, and the electronic properties depend on the distance between the defect and the closer ribbon edge. These findings are robust within a wide range of defect concentration.
机译:通过大量的第一性原理计算研究了具有Stone-Wales缺陷的曲折形石墨烯纳米带(ZGNR)的电子和磁性。结果表明,Stone-Wales缺陷的不对称分布会在缺陷ZGNR中感应出有限的磁矩。随着靠近带边缘之一的缺陷移动到中心区域,在从金属过渡到半金属并最终过渡到半导体之后,缺陷ZGNR的磁矩逐渐减小到零。另外,通过在缺陷ZGNR的相对侧对称地放置其他缺陷,有限的磁矩消失了,电子特性取决于缺陷和较近的碳带边缘之间的距离。这些发现在广泛的缺陷集中范围内都是可靠的。

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