首页> 外文会议>4th international conference on microanoscale heat and mass transfer 2013 : Microanofluidics and Lab-on-a-chip ... >SOLVENT SOAKING AND DRYING OF CARBON NANOTUBE FORESTS FOR ENHANCED CONTACT AREA AND THERMAL INTERFACE CONDUCTANCE
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SOLVENT SOAKING AND DRYING OF CARBON NANOTUBE FORESTS FOR ENHANCED CONTACT AREA AND THERMAL INTERFACE CONDUCTANCE

机译:碳纳米管森林的溶剂浸泡和干燥,用于增强接触面积和热界面传导

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摘要

Forests comprised of nominally vertically aligned carbon nanotubes (CNTs), having outstanding thermal and mechanical properties, are excellent candidates for thermal interface materials (TIMs). However, the thermal performance of CNT forest TIMs has been limited by the presence of high thermal contact resistances at the CNT tip interface. The high thermal contact resistance at the CNT tip interface stems from two sources: (1) the relatively weak van der Waals type bonding, which impedes phonon transport, and (2) low contact area. In this work we will show that common solvents, such as water, can be applied to the CNT forest to increase the contact area and reduce the contact resistance by an average of 75%. Specifically, there are two likely mechanisms that can increase the contact area when a CNT forest is wet with a fluid and compressed in an interface. The first is relaxing the van der Waals interactions between contacting CNTs within the forest, consequently decreasing the stiffness of the forest and allowing it to better conform to the opposing surface. The second is the pulling of CNT tips through capillary interactions into contact with the opposing surface as the solvent evaporates. By measuring the thermal resistance of CNT TIMs before and after soaking in variety of solvents the capacity of each mechanism for reducing the contact resistance is explored.
机译:由名义上垂直排列的碳纳米管(CNT)组成的森林具有出色的热和机械性能,是热界面材料(TIM)的极佳候选者。但是,CNT森林TIM的热性能受到CNT尖端界面处高热接触电阻的限制。 CNT尖端界面处的高热接触电阻来自两个来源:(1)相对较弱的范德华型键合会阻碍声子的传输;(2)接触面积低。在这项工作中,我们将证明可以将普通溶剂(例如水)应用于CNT林,以增加接触面积并平均降低接触电阻75%。具体而言,当CNT林被流体润湿并在界面处压缩时,有两种可能的机制可以增加接触面积。首先是放松森林中接触碳纳米管之间的范德华相互作用,从而降低森林的刚度并使森林更好地适应相对表面。第二个是随着溶剂蒸发,通过毛细管相互作用拉动CNT尖端,使其与相对表面接触。通过测量在各种溶剂中浸泡前后的CNT TIM的热阻,探索了每种降低接触电阻的机理。

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