Lv Ruicong, Guo Haichang, Kang Lei, Bashir Akbar, Ren Liucheng, Niu Hongyu, Bai Shulin
School of Materials Science and Engineering, HEDPS/Center for Applied Physics and Technology, Peking University, Beijing 100871, China.
Peking University Nanchang Innovation Institute, 14#1-2 Floor, High-Level Talent Industrial Park, High-Tech District, Nanchang 330000, China.
Nanomaterials (Basel). 2023 Aug 3;13(15):2243. doi: 10.3390/nano13152243.
With the rapid development of the electronics industry, there is a growing demand for packaging materials that possess both high thermal conductivity (TC) and low electrical conductivity (EC). However, traditional insulating fillers such as boron nitride, aluminum nitride, and alumina (AlO) have relatively low intrinsic TC. When graphene, which exhibits both superhigh TC and EC, is used as a filler to fill epoxy resin, the TC of blends can be much higher than that of blends containing more traditional fillers. However, the high EC of graphene limits its application in cases where electrical insulation is required. To address this challenge, a method for coating graphene sheets with an in situ grown AlO layer has been proposed for the fabrication of epoxy-based composites with both high TC and low EC. In the presence of a cationic surfactant, a dense AlO layer with a network structure can be formed on the surface of graphene sheets. When the total content of AlO and graphene mixed filler reached 30 wt%, the TC of the epoxy composite reached 0.97 W m K, while the EC remained above 10 Ω·cm. Finite element simulations accurately predicted TC and EC values in accordance with experimental results. This material, with its combination of high TC and good insulation properties, exhibits excellent potential for microelectronic packaging applications.
随着电子工业的快速发展,对兼具高导热率(TC)和低电导率(EC)的包装材料的需求日益增长。然而,诸如氮化硼、氮化铝和氧化铝(AlO)等传统绝缘填料的固有TC相对较低。当兼具超高TC和EC的石墨烯用作填料填充环氧树脂时,共混物的TC可比含有更多传统填料的共混物高得多。然而,石墨烯的高EC限制了其在需要电绝缘的情况下的应用。为应对这一挑战,已提出一种用原位生长的AlO层包覆石墨烯片的方法,用于制备兼具高TC和低EC的环氧基复合材料。在阳离子表面活性剂存在的情况下,可在石墨烯片表面形成具有网络结构的致密AlO层。当AlO与石墨烯混合填料的总含量达到30 wt%时,环氧复合材料的TC达到0.97 W m K,而EC保持在10 Ω·cm以上。有限元模拟根据实验结果准确预测了TC和EC值。这种兼具高TC和良好绝缘性能的材料在微电子封装应用中展现出优异的潜力。