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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Comparison of the electronic transport properties of metallic graphene and silicene nanoribbons
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Comparison of the electronic transport properties of metallic graphene and silicene nanoribbons

机译:金属石墨烯和硅烯纳米带的电子传输性能比较

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Carbon-based materials such as carbon nanotubes and graphene nanoribbons are investigated extensively for the near future nanoelectronics technology. Considering the expertise on the processing of silicon, various implementations of silicon counterparts of these nanoscale components such as silicon nanotubes and silicene nanoribbons have also been reported recently. In this work, electronic transport properties of metallic graphene and silicene nanoribbons (GNRs and SiNRs) are compared. Ab initio simulations based on density functional theory combined with non-equilibrium Green’s function formalism are used to obtain the voltage-dependent transmission spectra, resistance–voltage variations and the potential profiles of realistic metallic GNR and SiNR samples. The investigation of the variations of the transmission characteristics of the GNRs and SiNRs exposes that both nano structures show voltagedependent resistances due to elastic potential scattering compliant with Büttiker formalism. However, the variation of the transmission spectra of GNRs by the applied voltage is lower than that of SiNRs indicating that metallic GNRs seem to be better candidates compared to their silicon counterparts for use as metallic interconnects.
机译:基于碳的材料,例如碳纳米管和石墨烯纳米带,已为近期的纳米电子技术进行了广泛的研究。考虑到处理硅的专业知识,最近还报道了这些纳米级组件的硅对应物的各种实现方式,例如硅纳米管和硅纳米带。在这项工作中,比较了金属石墨烯和硅碳纳米带(GNR和SiNR)的电子传输性能。基于密度泛函理论和不平衡格林函数形式主义的从头算模拟,用于获得实际金属GNR和SiNR样品的电压依赖性透射光谱,电阻-电压变化和电势曲线。对GNR和SiNRs传输特性变化的研究表明,由于符合Büttiker形式主义的弹性势能散射,两种纳米结构均显示出电压依赖性电阻。但是,GNR的透射光谱随施加电压的变化低于SiNR的变化,这表明与用作金属互连的硅对应物相比,金属GNR似乎是更好的候选物。

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