Shi Zhendong, Yun Qingwen, Zhang Tong, Xing Changsheng, Li Jie, Wu Yunzhong, Wang Lidong
Harbin Aircraft Industry Group Co., Ltd., Aviation Industry Corporation of China, Harbin 150066, China.
Harbin Hafei Aviation Industry Co., Ltd., Aviation Industry Corporation of China, Harbin 150010, China.
Materials (Basel). 2024 May 23;17(11):2519. doi: 10.3390/ma17112519.
Graphene has attracted much interest in many scientific fields because of its high specific surface area, Young's modulus, fracture strength, carrier mobility and thermal conductivity. In particular, the graphene oxide (GO) prepared by chemical exfoliation of graphite has achieved low-cost and large-scale production and is one of the most promising for Cu matrix composites. Here, we prepared a high strength, high electrical conductivity and high thermal conductivity reduced graphene oxide (RGO)/Cu composite by directly heating the GO/copper formate. The oxygen-containing functional groups and defects of RGO are significantly reduced compared with those of GO. The tensile yield strength and thermal conductivity of RGO/Cu composite with RGO volume fraction of 0.49 vol.% are as high as 553 MPa and 364 W/(m·K) at room temperature, respectively. The theoretical value of the tensile yield strength of the composite is calculated according to the strengthening mechanism, and the result shows that it agrees with the experimental value. After hot-rolling treatment, the ductility and conductivity of the composite materials have been greatly improved, and the ductility of the RGO/Cu composite with RGO volume fraction of 0.49 vol.% has been increased to four times the original. This work provides a highly efficient way to fabricate a high-performance RGO-reinforced Cu composite for commercial application.
石墨烯因其高比表面积、杨氏模量、断裂强度、载流子迁移率和热导率而在许多科学领域引起了广泛关注。特别是,通过化学剥离石墨制备的氧化石墨烯(GO)已实现低成本大规模生产,是用于铜基复合材料最具前景的材料之一。在此,我们通过直接加热GO/甲酸铜制备了一种高强度、高电导率和高导热率的还原氧化石墨烯(RGO)/铜复合材料。与GO相比,RGO的含氧官能团和缺陷显著减少。RGO体积分数为0.49 vol.%的RGO/Cu复合材料在室温下的拉伸屈服强度和热导率分别高达553 MPa和364 W/(m·K)。根据强化机制计算了复合材料拉伸屈服强度的理论值,结果表明与实验值相符。经过热轧处理后,复合材料的延展性和导电性得到了极大提高,RGO体积分数为0.49 vol.%的RGO/Cu复合材料的延展性提高到原来的四倍。这项工作为制备用于商业应用的高性能RGO增强铜复合材料提供了一种高效方法。