Zou Hanying, Feng Yanhui, Qiu Lin, Zhang Xinxin
School of Energy and Environmental Engineering, University of Science and Technology Beijing Beijing 100083 China
RSC Adv. 2020 Dec 15;10(72):44196-44204. doi: 10.1039/d0ra06870e. eCollection 2020 Dec 9.
Due to their excellent electrical and thermal conductivity properties, the nano-scale characteristics of carbon nanotubes (CNTs) are expected to be suitable for very large-scale integrated circuits and for next-generation micro interconnected devices. Consequently, CNT-metal composite materials have been widely researched, and have shown excellent performance in terms of thermal conductivity, electrical conductivity, thermal expansion, and adaptability to microelectronic devices. However, there are few studies on halogen-CNT composite materials with characteristics similar to CNT-metal composites, including regarding the remarkable electrical compatibility of the halogen and CNT and the large number of low-frequency phonons that are beneficial for thermal transport. In this work, iodine chains were considered to explore the halogen effect on CNTs. Variation of the interfacial thermal conductance of CNTs as a function of the iodine chains loading amount and arrangement was explored by a molecular dynamics method. The heat transfer mechanism was further analyzed based on the phonon state difference. This research is expected to provide a new pathway for the application of CNT composite materials in the field of next-generation microelectronics.
由于碳纳米管(CNTs)具有优异的电学和热导率特性,其纳米尺度特性有望适用于超大规模集成电路和下一代微互连器件。因此,碳纳米管-金属复合材料已得到广泛研究,并在热导率、电导率、热膨胀以及对微电子器件的适应性方面表现出优异性能。然而,关于具有与碳纳米管-金属复合材料类似特性的卤素-碳纳米管复合材料的研究较少,包括卤素与碳纳米管之间显著的电兼容性以及对热传输有益的大量低频声子。在这项工作中,考虑碘链以探究卤素对碳纳米管的影响。通过分子动力学方法研究了碳纳米管界面热导率随碘链负载量和排列的变化。基于声子态差异进一步分析了传热机制。该研究有望为碳纳米管复合材料在下一代微电子领域的应用提供一条新途径。