Zhang Jiacheng, Wang Zi, Jiang Guoqing, Wei Huachao, Zhang Zongxi, Ren Junwen
College of Electrical Engineering, Sichuan University, Chengdu 610065, China.
Electric Power Research Institute, State Grid Corporation of Sichuan Province, Chengdu 610072, China.
Nanomaterials (Basel). 2023 Aug 12;13(16):2322. doi: 10.3390/nano13162322.
The demand for high-performance dielectrics has increased due to the rapid development of modern electric power and electronic technology. Composite dielectrics, which can overcome the limitations of traditional single polymers in thermal conductivity, dielectric properties and mechanical performance, have received considerable attention. In this study, we report a multifunctional nanocomposite material fabricated by blending fluorinated graphene (F-graphene) with epoxy resin. The F-graphene/epoxy composite exhibited a high thermal conductivity of 0.3304 W·m·K at a low filler loading of 1.0 wt.%, which was 67.63% higher than that of pure epoxy. The composite dielectric also showed high breakdown strength (78.60 kV/mm), high dielectric constant (8.23), low dielectric loss (<0.015) and low AC conductivity (<10 S·m). Moreover, the composite demonstrated high thermal stability and strong mechanical strength. It is believed that the F-graphene/epoxy composite has outstanding performance in various aspects and can enable the development and manufacturing of advanced electric power and electronic equipment devices.
随着现代电力和电子技术的快速发展,对高性能电介质的需求不断增加。复合电介质能够克服传统单一聚合物在热导率、介电性能和机械性能方面的局限性,因此受到了广泛关注。在本研究中,我们报道了一种通过将氟化石墨烯(F-石墨烯)与环氧树脂共混制备的多功能纳米复合材料。在1.0 wt.%的低填料负载量下,F-石墨烯/环氧树脂复合材料表现出0.3304 W·m·K的高导热率,比纯环氧树脂高出67.63%。该复合电介质还具有高击穿强度(78.60 kV/mm)、高介电常数(8.23)、低介电损耗(<0.015)和低交流电导率(<10 S·m)。此外,该复合材料具有高热稳定性和强机械强度。据信,F-石墨烯/环氧树脂复合材料在各个方面都具有出色的性能,能够推动先进电力和电子设备器件的开发与制造。