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Carbon nanotube thermal interfaces enhanced with sprayed on nanoscale polymer coatings

机译:碳纳米管热界面通过喷涂在纳米级聚合物涂层上得到增强

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Vertical carbon nanotube (CNT) forests bonded at room temperature with sprayed on nanoscale polymer coatings are found by measurement to produce thermal resistances that are on a par with those of conventional metallic solders. These results are achieved by reducing the high contact resistance at CNT tips, which has hindered the development of high performance thermal interface materials based on CNTs. A spray coating process is developed for depositing nanoscale coatings of polystyrene and poly-3-hexylthiophene onto CNT forests, as a bonding agent that mitigates thermal resistance by enhancing the area available for heat transfer at CNT contacts. Resistances as low as 4.9 ± 0.3 mm~2 K W~(-1) are achieved for the entire polymer coated CNT interface structure. The suitability of the spray coating process for large-scale implementation and the role of polymer and CNT forest thickness in determining the thermal resistance are also examined.
机译:通过测量发现,在室温下通过喷涂在纳米级聚合物涂层上粘结的垂直碳纳米管(CNT)林可产生与常规金属焊料相同的热阻。这些结果是通过降低CNT尖端的高接触电阻来实现的,这阻碍了基于CNT的高性能热界面材料的开发。开发了一种喷涂工艺,用于将聚苯乙烯和聚3-己基噻吩的纳米级涂料沉积到CNT林上,作为一种粘合剂,该粘合剂通过增加可用于CNT接触处传热的面积来减轻热阻。对于整个聚合物涂覆的CNT界面结构,实现了低至4.9±0.3 mm〜2 K W〜(-1)的电阻。还检查了喷涂工艺对大规模实施的适用性,以及聚合物和CNT林厚度在确定热阻中的作用。

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