Department of Mechanical Engineering, University of Maryland, College Park, MD 20742, USA.
Department of Materials Science and Engineering, University of Maryland College Park, MD 20742, USA.
Nanoscale. 2016 Nov 24;8(46):19326-19333. doi: 10.1039/c6nr07357c.
Phase change materials (PCMs) possessing ideal properties, such as superior mass specific heat of fusion, low cost, light weight, excellent thermal stability as well as isothermal phase change behavior, have drawn considerable attention for thermal management systems. Currently, the low thermal conductivity of PCMs (usually less than 1 W mK) greatly limits their heat dissipation performance in thermal management applications. Hexagonal boron nitride (h-BN) is a two-dimensional material known for its excellent thermally conductive and electrically insulating properties, which make it a promising candidate to be used in electronic systems for thermal management. In this work, a composite, consisting of h-BN nanosheets (BNNSs) and commercialized paraffin wax was developed, which inherits high thermally conductive and electrically insulating properties from BNNSs and substantial heat of fusion from paraffin wax. With the help of BNNSs, the thermal conductivity of wax-BNNS composites reaches 3.47 W mK, which exhibits a 12-time enhancement compared to that of pristine wax (0.29 W mK). Moreover, an 11.3-13.3 MV m breakdown voltage of wax-BNNS composites was achieved, which shows further improved electrical insulating properties. Simultaneously enhanced thermally conductive and electrically insulating properties of wax-BNNS composites demonstrate their promising application for thermal management in electronic systems.
相变材料 (PCM) 具有理想的特性,如优异的熔融质量热容、低成本、轻重量、出色的热稳定性以及等温相变行为,因此引起了人们对热管理系统的极大关注。目前,PCM 的热导率低(通常小于 1 W mK),这极大地限制了它们在热管理应用中的散热性能。六方氮化硼 (h-BN) 是一种二维材料,以其优异的导热和绝缘性能而闻名,这使其成为电子系统热管理中极具应用前景的候选材料。在这项工作中,开发了一种由 h-BN 纳米片 (BNNSs) 和商业化石蜡组成的复合材料,它继承了 BNNSs 的高热导率和绝缘性能以及石蜡的大量熔融热。在 BNNSs 的帮助下,蜡-BNNS 复合材料的热导率达到 3.47 W mK,与纯石蜡(0.29 W mK)相比,提高了 12 倍。此外,蜡-BNNS 复合材料还实现了 11.3-13.3 MV m 的击穿电压,表现出进一步改善的电绝缘性能。蜡-BNNS 复合材料同时增强的导热和绝缘性能表明其在电子系统热管理中有广阔的应用前景。