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首页> 外文期刊>ACS nano >Spin polarized conductance in hybrid graphene nanoribbons using 5-7 defects
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Spin polarized conductance in hybrid graphene nanoribbons using 5-7 defects

机译:使用5-7缺陷在混合石墨烯纳米带中自旋极化电导

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摘要

We present a class of intramolecular graphene heterojunctions and use first-principles density functional calculations to describe their electronic, magnetic, and transport properties. The hybrid graphene and hybrid graphene nanoribbons have both armchair and zigzag features that are separated by an interface made up of pentagonal and heptagonal carbon rings. Contrary to conventional graphene sheets, the computed electronic density of states indicates that all hybrid graphene and nanoribbon systems are metallic. Hybrid nanoribbons are found to exhibit a remarkable width-dependent magnetic behavior and behave as spin polarized conductors.
机译:我们提出了一类分子内石墨烯异质结,并使用第一原理密度泛函来描述其电子,磁性和传输性质。杂化石墨烯和杂化石墨烯纳米带同时具有扶手椅和锯齿形特征,它们由由五边形和七边形碳环组成的界面隔开。与常规石墨烯片相反,计算得到的态电子密度表明所有杂化石墨烯和纳米带系统都是金属的。发现杂化纳米带表现出显着的宽度依赖性磁行为,并表现为自旋极化导体。

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