Shenzhen Institutes of Advanced Technology , Chinese Academy of Sciences , Shenzhen 518055 , China.
Shenzhen College of Advanced Technology , University of Chinese Academy of Sciences , Shenzhen 518055 , China.
ACS Appl Mater Interfaces. 2018 Mar 21;10(11):9669-9678. doi: 10.1021/acsami.8b00328. Epub 2018 Mar 9.
Efficient heat removal via thermal management materials has become one of the most critical challenges in the development of modern microelectronic devices. However, previously reported polymer composites exhibit limited enhancement of thermal conductivity, even when highly loaded with thermally conductive fillers, because of the lack of efficient heat transfer pathways. Herein, we report vertically aligned and interconnected SiC nanowire (SiCNW) networks as efficient fillers for polymer composites, achieving significantly enhanced thermal conductivity. The SiCNW networks are produced by freeze-casting nanowire aqueous suspensions followed by thermal sintering to consolidate the nanowire junctions, exhibiting a hierarchical architecture in which honeycomb-like SiCNW layers are aligned. The composite obtained by infiltrating SiCNW networks with epoxy resin, at a relatively low SiCNW loading of 2.17 vol %, represents a high through-plane thermal conductivity (1.67 W m K) compared to the pure matrix, which is equivalent to a significant enhancement of 406.6% per 1 vol % loading. The orderly SiCNW network which can act as a macroscopic expressway for phonon transport is believed to be the main contributor for the excellent thermal performance. This strategy provides insights for the design of high-performance composites with potential to be used in advanced thermal management materials.
高效的热移除通过热管理材料已经成为现代微电子设备发展的最关键挑战之一。然而,以前报道的聚合物复合材料表现出有限的热导率增强,即使在高负载导热填料的情况下,因为缺乏有效的热传递途径。在这里,我们报告垂直排列和相互连接的碳化硅纳米线 (SiCNW) 网络作为聚合物复合材料的有效填充材料,实现了显著增强的热导率。SiCNW 网络是通过冷冻铸造纳米线水悬浮液然后进行热烧结来固结纳米线连接来制备的,表现出一种分层结构,其中蜂窝状 SiCNW 层排列。通过将 SiCNW 网络渗透到环氧树脂中获得的复合材料,在相对较低的 SiCNW 负载 2.17 体积%下,与纯基质相比,表现出高面内热导率(1.67 W m K),这相当于每 1 体积%负载显著增强 406.6%。有序的 SiCNW 网络可以作为声子传输的宏观高速公路,被认为是优异热性能的主要贡献者。这种策略为设计具有潜在应用于先进热管理材料的高性能复合材料提供了思路。