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Suppression of electron–vibron coupling in graphene nanoribbons contacted via a single atom

机译:抑制通过单个原子接触的石墨烯纳米带中的电子-维纶偶联

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Graphene nanostructures, where quantum confinement opens an energy gap in the band structure, hold promise for future electronic devices. To realize the full potential of these materials, atomic-scale control over the contacts to graphene and the graphene nanostructure forming the active part of the device is required. The contacts should have a high transmission and yet not modify the electronic properties of the active region significantly to maintain the potentially exciting physics offered by the nanoscale honeycomb lattice. Here we show how contacting an atomically well-defined graphene nanoribbon to a metallic lead by a chemical bond via only one atom significantly influences the charge transport through the graphene nanoribbon but does not affect its electronic structure. Specifically, we find that creating well-defined contacts can suppress inelastic transport channels.
机译:量子限制在能带结构中产生能隙的石墨烯纳米结构为未来的电子设备带来了希望。为了实现这些材料的全部潜力,需要对与石墨烯和形成器件有源部件的石墨烯纳米结构的接触进行原子级控制。触点应具有较高的透射率,但不应显着改变有源区的电子特性,以保持纳米级蜂窝状晶格提供的潜在令人兴奋的物理特性。在这里,我们展示了如何通过仅一个原子通过化学键将原子上定义明确的石墨烯纳米带与金属铅接触,显着影响通过石墨烯纳米带的电荷传输,但不影响其电子结构。具体而言,我们发现创建定义明确的联系人可以抑制非弹性运输渠道。

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