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首页> 外文期刊>ACS nano >Ambipolar Transport in Solution-Synthesized Graphene Nanoribbons
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Ambipolar Transport in Solution-Synthesized Graphene Nanoribbons

机译:溶液合成石墨烯纳米带中的双极传输。

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摘要

Graphene nanoribbons (GNRs) with robust electronic band gaps are promising candidate materials for nanometer-scale electronic circuits. Realizing their full potential, however, will depend on the ability to access GNRs with prescribed widths and edge structures and an understanding of their fundamental electronic properties. We report field-effect devices exhibiting ambipolar transport in accumulation mode composed of solution-synthesized GNRs with straight armchair edges. Temperature-dependent electrical measurements specify thermally activated charge transport, which we attribute to inter-ribbon hopping. With access to structurally precise materials in practical quantities and by overcoming processing difficulties in making electrical contacts to these materials, we have demonstrated critical steps toward nanoelectric devices based on solution-synthesized GNRs.
机译:具有强大的电子带隙的石墨烯纳米带(GNR)是用于纳米级电子电路的有前途的候选材料。然而,要实现它们的全部潜力,将取决于访问具有规定宽度和边缘结构的GNR的能力以及对它们的基本电子特性的理解。我们报告场效应器件在积累模式下展示双极性传输,该模式由溶液合成的GNR与直扶手椅边缘组成。与温度有关的电学测量指定了热激活的电荷传输,我们将其归因于碳带间跳跃。通过使用实际数量的结构精密材料,并克服了与这些材料进行电接触的加工难题,我们已经展示了基于溶液合成GNR的纳米电器件的关键步骤。

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