Ni Ya, Chen Lei, Teng Kunyue, Shi Jie, Qian Xiaoming, Xu Zhiwei, Tian Xu, Hu Chuansheng, Ma Meijun
Key Laboratory of Advanced Braided Composites, Ministry of Education, School of Textiles, Tianjin Polytechnic University, Tianjin 300387, P. R. China.
ACS Appl Mater Interfaces. 2015 Jun 3;7(21):11583-91. doi: 10.1021/acsami.5b02552. Epub 2015 May 18.
Epoxy-based composites reinforced by three-dimensional graphene skeleton (3DGS) were fabricated in resin transfer molding method with respect to the difficulty in good dispersion and arrangement of graphene sheets in composites by directly mixing graphene and epoxy. 3DGS was synthesized in the process of self-assembly and reduction with poly(amidoamine) dendrimers. In the formation of 3DGS, graphene sheets were in good dispersion and ordered state, which resulted in exceptional mechanical properties and thermal stability for epoxy composites. For 3DGS/epoxy composites, the tensile and compressive strengths significantly increased by 120.9% and 148.3%, respectively, as well as the glass transition temperature, which increased by a notable 19 °C, unlike the thermal exfoliation graphene/epoxy composites via direct-mixing route, which increased by only 0.20 wt % content of fillers. Relative to the graphene/epoxy composites in direct-mixing method mentioned in literature, the increase in tensile and compressive strengths of 3DGS/epoxy composites was at least twofold and sevenfold, respectively. It can be expected that 3DGS, which comes from preforming graphene sheets orderly and dispersedly, would replace graphene nanosheets in polymer nanocomposite reinforcement and endow composites with unique structure and some unexpected performance.
针对通过直接混合石墨烯和环氧树脂在复合材料中难以使石墨烯片良好分散和排列的问题,采用树脂传递模塑法制备了由三维石墨烯骨架(3DGS)增强的环氧基复合材料。3DGS是在聚(酰胺胺)树枝状大分子的自组装和还原过程中合成的。在3DGS的形成过程中,石墨烯片处于良好的分散和有序状态,这使得环氧复合材料具有优异的机械性能和热稳定性。对于3DGS/环氧复合材料,其拉伸强度和压缩强度分别显著提高了120.9%和148.3%,玻璃化转变温度也显著提高了19℃,这与通过直接混合路线制备的热剥离石墨烯/环氧复合材料不同,后者仅在填料含量为0.20 wt%时玻璃化转变温度才有所提高。相对于文献中提到的直接混合法制备的石墨烯/环氧复合材料,3DGS/环氧复合材料的拉伸强度和压缩强度的提高分别至少为两倍和七倍。可以预期,由有序且分散的预制石墨烯片形成的3DGS将在聚合物纳米复合材料增强中取代石墨烯纳米片,并赋予复合材料独特的结构和一些意想不到的性能。