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Thermal Properties of Metal-Coated Vertically Aligned Single-Wall Nanotube Arrays

机译:金属涂层垂直排列的单壁纳米管阵列的热性能。

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Owing to their high thermal conductivities, carbon nanotubes (CNTs) are promising for use in advanced thermal interface materials. While there has been much previous research on the properties of isolated CNTs, there are few thermal data for aligned films of single wall nanotubes. Furthermore, such data for nanotube films do not separate volume from interface thermal resistances. This paper uses a thermoreflectance technique to measure the volumetric heat capacity and thermal interface resistance and to place a lower bound on the internal volume resistance of a vertically aligned single wall CNT array capped with an aluminum film and palladium adhesion layer. The total thermal resistance of the structure, including volume and interface contributions, is 12 m~2 K MW~(-1). The data show that the top and bottom interfaces of the CNT array strongly reduce its effective vertical thermal conductivity. A low measured value for the effective volumetric heat capacity of the CNT array shows that only a small volume fraction of the CNTs participate in thermal transport by bridging the two interfaces. A thermal model of transport in the array exploits the volumetric heat capacity to extract an individual CNT-metal contact resistance of 10 m~2 K~1 GW~(-1) (based on the annular area A_a=πdb), which is equivalent to the volume resistance of 14 nm of thermal SlO_2. This work strongly indicates that increasing the fraction of CNT-metal contacts can reduce the total thermal resistance below 1 m~2K MW~(-1).
机译:由于其高的热导率,碳纳米管(CNT)有望用于先进的热界面材料。尽管以前对隔离的CNT的性质进行了很多研究,但单壁纳米管的取向膜的热数据很少。此外,用于纳米管膜的此类数据并未将体积与界面热阻分开。本文使用热反射技术来测量体积热容和热界面电阻,并在覆盖铝膜和钯粘合层的垂直排列单壁CNT阵列的内部体积电阻上设置下限。该结构的总热阻(包括体积和界面贡献)为12 m〜2 K MW〜(-1)。数据表明,CNT阵列的顶部和底部界面大大降低了其有效的垂直导热率。碳纳米管阵列的有效体积热容的低测量值表明,只有少量的碳纳米管通过桥接两个界面来参与热传输。阵列中传输的热模型利用体积热容量来提取10 m〜2 K〜1 GW〜(-1)的单个CNT-金属接触电阻(基于环形面积A_a =πdb),这是等效的达到热SlO_2的14nm的体积电阻。这项工作有力地表明,增加CNT-金属触点的比例可以将总热阻降低至1 m〜2K MW〜(-1)以下。

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