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Temperature-dependent phonon conduction and nanotube engagement in metalized single wall carbon nanotube films

机译:金属化单壁碳纳米管薄膜中与温度有关的声子传导和纳米管接合

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Interfaces dominate the thermal resistances in aligned carbon nanotube arrays. This work uses nanosecond thermoreflectance thermometry to separate interface and volume resistances for 10 μm thick aligned SWNT films coated with Al, Ti, Pd, Pt, and Ni. We interpret the data by defining the nanotube-metal engagement factor, which governs the interface resistance and is extracted using the measured film heat capacity. The metal-SWNT and SWNT-substrate resistances range between 3.8 and 9.2 mm~2K/W and 33-46 mm~2K/W, respectively. The temperature dependency of the heat capacity data, measured between 125 and 300 K, is in good agreement with theoretical predictions. The temperature dependence demonstrated by the metal-SWNT interface resistance data suggests inelastic phonon transmission.
机译:在对准的碳纳米管阵列中,界面主导着热阻。这项工作使用纳秒级热反射测温法来分离涂有Al,Ti,Pd,Pt和Ni的10μm厚取向SWNT膜的界面电阻和体积电阻。我们通过定义纳米管与金属的结合因子来解释数据,该因子控制界面电阻,并使用测得的薄膜热容量提取。金属SWNT和SWNT衬底的电阻分别在3.8和9.2mm〜2K / W和33-46mm〜2K / W之间。在125至300 K之间测得的热容数据的温度依赖性与理论预测非常吻合。金属-SWNT界面电阻数据表明的温度依赖性表明非弹性声子传输。

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