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首页> 外文期刊>Nanotechnology >Mechanisms governing phonon scattering by topological defects in graphene nanoribbons
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Mechanisms governing phonon scattering by topological defects in graphene nanoribbons

机译:石墨烯纳米带中的拓扑缺陷控制声子散射的机理

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摘要

Understanding phonon scattering by topological defects in graphene is of particular interest for thermal management in graphene-based devices. We present a study that quantifies the roles of the different mechanisms governing defect phonon scattering by comparing the effects of ten different defect structures using molecular dynamics. Our results show that phonon scattering is mainly influenced by mass density difference, with general trends governed by the defect formation energy and typical softening behaviors in the phonon density of state. The phonon scattering cross-section is found to be far larger than that geometrically occupied by the defects. We also show that the lattice thermal conductivity can be reduced by a factor of up to similar to 30 in the presence of the grain boundaries formed by these defects.
机译:对于基于石墨烯的器件中的热管理,了解石墨烯中的拓扑缺陷引起的声子散射特别重要。我们提出了一项研究,该研究通过使用分子动力学比较十种不同缺陷结构的影响来量化控制缺陷声子散射的不同机制的作用。我们的结果表明,声子散射主要受质量密度差的影响,总体趋势受缺陷形成能和声子密度状态下典型的软化行为的支配。发现声子散射截面远大于缺陷在几何上占据的截面。我们还表明,在存在由这些缺陷形成的晶界的情况下,晶格热导率可以降低多达30倍。

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