Department of Mechanical Engineering Faculty of Engineering Sciences, Ben-Gurion University of the Negev, Be'er Sheva, Israel.
Nanotechnology. 2019 Dec 13;30(50):505705. doi: 10.1088/1361-6528/ab424e. Epub 2019 Sep 6.
The continuous miniaturization of electronic devices substantially increases their power density, and consequently, requires effective cooling of these components. Vertically aligned carbon nanotubes (VA-CNTs) constitute one of the most promising materials for use as a high-end heat dissipation element due to their high thermal conductivity and large surface area. However, the lack of a clear understanding of the heat transfer mechanisms of VA-CNTs has so far impeded their large-scale use as cooling elements. Our infrared micro-thermography analysis revealed that the heat dissipation of VA-CNTs is determined mainly by their height, such that the heat dissipation behavior of tall samples was dominated by convection from the carbon nanotube (CNT) sidewalls. The mechanism of heat transfer in short VA-CNTs, in contrast, was determined by their morphology. Short VA-CNTs with highly organized CNT formations or with low thermal conductance exhibited convective heat dissipation similar to that of tall VA-CNTs, while other short VA-CNTs exhibited heat transfer dominated by conduction along the CNTs. This study provides important guidelines regarding the parameters that can be changed to optimize the performances of VA-CNTs in thermal applications. These applications include cooling elements in electronic devices, where convection is required, or thermal interface materials, where conduction is required.
电子设备的持续小型化极大地增加了它们的功率密度,因此需要有效地冷却这些组件。垂直排列的碳纳米管(VA-CNTs)由于其高热导率和大表面积,是用作高端散热元件最有前途的材料之一。然而,由于缺乏对 VA-CNTs 传热机制的清晰理解,迄今为止,它们作为冷却元件的大规模应用受到了阻碍。我们的红外微热成像分析表明,VA-CNTs 的散热主要取决于它们的高度,因此高样品的散热行为主要由碳纳米管(CNT)侧壁的对流决定。相比之下,短 VA-CNTs 的传热机制取决于它们的形态。具有高度有序 CNT 结构或低热导的短 VA-CNTs 表现出与高 VA-CNTs 相似的对流散热,而其他短 VA-CNTs 则表现出沿 CNT 传导主导的传热。这项研究为优化 VA-CNTs 在热应用中的性能可以改变的参数提供了重要指导。这些应用包括需要对流的电子设备中的冷却元件,或需要传导的热界面材料。