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首页> 外文期刊>Journal of nanomaterials >Thermal Resistance across Interfaces Comprising Dimensionally Mismatched Carbon Nanotube-Graphene Junctions in 3D Carbon Nanomaterials
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Thermal Resistance across Interfaces Comprising Dimensionally Mismatched Carbon Nanotube-Graphene Junctions in 3D Carbon Nanomaterials

机译:跨界面的热阻包括3D碳纳米材料中尺寸不匹配的碳纳米管-石墨烯结

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摘要

In the present study, reverse nonequilibrium molecular dynamics is employed to study thermal resistance across interfaces comprising dimensionally mismatched junctions of single layer graphene floors with (6,6) single-walled carbon nanotube (SWCNT) pillars in 3D carbon nanomaterials. Results obtained from unit cell analysis indicate the presence of notable interfacial thermal resistance in the out-of-plane direction (along the longitudinal axis of the SWCNTs) but negligible resistance in the in-plane direction along the graphene floor. The interfacial thermal resistance in the out-of-plane direction is understood to be due to the change in dimensionality as well as phonon spectra mismatch as the phonons propagate from SWCNTs to the graphene sheet and then back again to the SWCNTs. The thermal conductivity of the unit cells was observed to increase nearly linearly with an increase in cell size, that is, pillar height as well as interpillar distance, and approaches a plateau as the pillar height and the interpillar distance approach the critical lengths for ballistic thermal transport in SWCNT and single layer graphene. The results indicate that the thermal transport characteristics of these SWCNT-graphene hybrid structures can be tuned by controlling the SWCNT-graphene junction characteristics as well as the unit cell dimensions.
机译:在本研究中,采用反向非平衡分子动力学研究跨界面的热阻,该界面包括3D碳纳米材料中单层石墨烯地板与(6,6)单壁碳纳米管(SWCNT)柱的尺寸不匹配的结。从晶胞分析获得的结果表明,沿着石墨烯基底,在面外方向(沿SWCNT的纵轴)上存在显着的界面热阻,而在面内方向上存在可忽略的热阻。平面外方向上的界面热阻应理解为由于声子从SWCNT传播到石墨烯片,然后又返回到SWCNT时,尺寸变化以及声子光谱失配。观察到晶胞的热导率随晶胞尺寸(即,柱高和柱间距离)的增加而线性增加,并且随着柱高和柱间距离接近弹道热的临界长度而趋于平稳。在SWCNT和单层石墨烯中传输。结果表明,这些SWCNT-石墨烯杂化结构的热传输特性可以通过控制SWCNT-石墨烯结特性以及单位晶胞尺寸来调整。

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