Zhang Li, Zhu Wenfeng, Huang Ying, Qi Shuhua
Department of Applied Chemistry, School of Natural and Applied Sciences, Northwestern Polytechnical University, Xi'an 710072, China.
Nanomaterials (Basel). 2019 Sep 5;9(9):1264. doi: 10.3390/nano9091264.
One-dimensional silver nanowires (AgNWs) and two-dimensional graphene oxide (GO) were combined to construct a three-dimensional network structure. The AgNWs can effectively inhibit stacking of adjacent GO sheets by occupying regions between layers of GO. Moreover, the GO sheets embedded in the gaps of the AgNWs network increase the interfacial contact area between the AgNWs and the epoxy matrix, resulting in the formation of more efficient phonon transport channels. To prepare an epoxy-based thermal conductive composite, hybrid networks were fabricated and added to epoxy resin using a solution mixing method. Significant synergistic effects were observed between the AgNWs and GO sheets. The thermal conductivity of epoxy composites filled with 10 wt.% AgNW/GO hybrids was found to be 1.2 W/mK and the impact strength was 28.85 KJ/m, which are higher than the corresponding values of composites containing AgNWs or GO sheets alone. Thus, the thermal conductivity and impact strength of the epoxy composites were improved. The additive effects are mainly owing to the improved interfacial contact between the hybrid fillers and the epoxy resin, resulting in a more efficient phonon transport network. The use of hybrid fillers with different structures is a simple and scalable strategy for manufacturing high-performance thermally conductive materials for electronic packaging.
将一维银纳米线(AgNWs)与二维氧化石墨烯(GO)相结合,构建了一种三维网络结构。AgNWs可以通过占据GO层间区域有效地抑制相邻GO片层的堆叠。此外,嵌入AgNWs网络间隙中的GO片层增加了AgNWs与环氧树脂基体之间的界面接触面积,从而形成了更高效的声子传输通道。为制备基于环氧树脂的导热复合材料,采用溶液混合法制备了混合网络并将其添加到环氧树脂中。在AgNWs和GO片层之间观察到显著的协同效应。发现填充10 wt.% AgNW/GO混合物的环氧复合材料的热导率为1.2 W/mK,冲击强度为28.85 KJ/m,高于单独含有AgNWs或GO片层的复合材料的相应值。因此,环氧复合材料的热导率和冲击强度得到了提高。这种加成效应主要归因于混合填料与环氧树脂之间改善的界面接触,从而形成了更高效的声子传输网络。使用具有不同结构的混合填料是一种用于制造用于电子封装的高性能导热材料的简单且可扩展的策略。