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High-Quality Vertically Aligned Carbon Nanotubes for Applications as Thermal Interface Materials

机译:高质量垂直排列的碳纳米管,用作热界面材料

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Vertically aligned carbon nanotube (VACNT) array is an ideal form for heat dissipation in electronic packaging, due to its high-intrinsic thermal conductivity and robust mechanical properties. In this paper, we report the growth of high-quality VACNTs for the applications as thermal interface materials (TIMs). The high-quality VACNTs were grown and confirmed by the characterizations of Raman and thermogravimetric analyses. Metalized VACNT array was transferred and bonded to a metalized silicon or copper substrate. The VACNT-based TIM structure (Si-Ti/Ni/Au-In-Ti/Ni/Au-VACNT-Ti/Ni/Au-In-Ti/Ni/Au-Cu) was then successfully made after bonding to another substrate (copper or silicon). The total boundary resistance between the VACNT array and the surrounding materials was measured by an infrared thermal imaging method. Compared with the TIM sample made from carbon nanotubes grown in our laboratory chemical vapor deposition (CVD), the thermal boundary resistance of the TIM sample made from CNTs in the black magic CVD was greatly reduced from 11.6±0.5 to 3.4±0.1 mm2 KW-1. Overall, these high quality, and bonded VACNT arrays demonstrate properties promising for next-generation TIM applications.
机译:垂直排列的碳纳米管(VACNT)阵列具有很高的固有热导率和强大的机械性能,是电子封装散热的理想形式。在本文中,我们报告了用于热界面材料(TIM)的高质量VACNT的增长。生长了高质量的VACNT,并通过拉曼分析和热重分析证实了这一点。将金属化的VACNT阵列转移并结合到金属化的硅或铜基板上。然后,在与另一个基板结合后,成功制作了基于VACNT的TIM结构(Si-Ti / Ni / Au-In-Ti / Ni / Au-VACNT-Ti / Ni / Au-In-Ti / Ni / Au-Cu) (铜或硅)。 VACNT阵列与周围材料之间的总边界电阻通过红外热成像方法测量。与我们实验室化学气相沉积(CVD)中生长的由碳纳米管制成的TIM样品相比,黑魔术CVD中由CNT制成的TIM样品的热边界电阻从11.6±0.5大大降低至3.4±0.1 mm > 2 KW -1 。总体而言,这些高质量的粘合VACNT阵列展现出对下一代TIM应用有希望的性能。

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