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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Structure-mediated thermal transport of monolayer graphene allotropes nanoribbons
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Structure-mediated thermal transport of monolayer graphene allotropes nanoribbons

机译:结构介导的单层石墨同素异形体纳米带的热传递

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We report the study of the thermal transport management of monolayer graphene allo-trope nanoribbons (size ~20 × 4 nm~2) by the modulation of their structures via molecular dynamics simulations. The thermal conductivity of graphyne (GY)-like geometries is observed to decrease monotonously with increasing number of acetylenic linkages between adjacent hexagons. Strikingly, by incorporating those GY or GY-like structures, the thermal performance of graphene can be effectively engineered. The resulting het-ero-junctions possess a sharp local temperature jump at the interface, and show a much lower effective thermal conductivity due to the enhanced phonon-phonon scattering. More importantly, by controlling the percentage, type and distribution pattern of the GY or GY-like structures, the hetero-junctions are found to exhibit tunable thermal transport properties (including the effective thermal conductivity, interfacial thermal resistance and rectification). This study provides a heuristic guideline to manipulate the thermal properties of 2D carbon networks, ideal for application in thermoelectric devices with strongly suppressed thermal conductivity.
机译:我们报告了通过分子动力学模拟对结构的调节,研究了单层石墨烯同素异形纳米带(尺寸约20×4 nm〜2)的热输运管理的研究。观察到类似石墨烯(GY)的几何形状的热导率随着相邻六边形之间炔键数量的增加而单调降低。令人惊讶的是,通过合并那些GY或类似GY的结构,可以有效地设计石墨烯的热性能。所产生的异质结在界面处具有急剧的局部温度跃变,并且由于增强的声子-声子散射而显示出低得多的有效热导率。更重要的是,通过控制GY或GY样结构的百分比,类型和分布模式,发现异质结显示出可调节的热传输特性(包括有效的导热率,界面热阻和整流)。这项研究提供了启发性的指导方针来控制2D碳网络的热性能,非常适合在热导率受到强烈抑制的热电设备中应用。

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