Guo Yifan, Peng Fuxi, Wang Huagao, Huang Fei, Meng Fanbin, Hui David, Zhou Zuowan
Key Laboratory of Advanced Technologies of Materials (Ministry of Education), School of Materials Science and Engineering, Southwest Jiaotong University, Chengdu 610031, China.
Department of Mechanical Engineering, University of New Orleans, New Orleans, LA 70148, USA.
Polymers (Basel). 2018 Jan 10;10(1):61. doi: 10.3390/polym10010061.
The rapid development of society has promoted increasing demand for various polymer materials. A large variety of efforts have been applied in order for graphene strengthened polymer composites to satisfy different requirements. Graphene/polymer composites synthesized by traditional strategies display some striking defects, like weak interfacial interaction and agglomeration of graphene, leading to poor improvement in performance. Furthermore, the creation of pre-prepared graphene while being necessary always involves troublesome processes. Among the various preparation strategies, an appealing approach relies on intercalation and polymerization in the interlayer of graphite and has attracted researchers' attention due to its reliable, fast and simple synthesis. In this review, we introduce an intercalation polymerization strategy to graphene/polymer composites by the intercalation of molecules/ions into graphite interlayers, as well as subsequent polymerization. The key point for regulating intercalation polymerization is tuning the structure of graphite and intercalants for better interaction. Potential applications of the resulting graphene/polymer composites, including electrical conductivity, electromagnetic absorption, mechanical properties and thermal conductivity, are also reviewed. Furthermore, the shortcomings, challenges and prospects of intercalation polymerization are discussed, which will be helpful to researchers working in related fields.
社会的快速发展推动了对各种聚合物材料需求的不断增加。为了使石墨烯增强聚合物复合材料满足不同需求,人们已经做出了各种各样的努力。通过传统策略合成的石墨烯/聚合物复合材料存在一些显著缺陷,如石墨烯的界面相互作用较弱和团聚,导致性能提升不佳。此外,预先制备石墨烯虽然必要,但总是涉及繁琐的过程。在各种制备策略中,一种引人注目的方法是在石墨层间进行插层和聚合,由于其合成可靠、快速且简单,已引起研究人员的关注。在这篇综述中,我们介绍了一种通过将分子/离子插入石墨层间以及随后的聚合来制备石墨烯/聚合物复合材料的插层聚合策略。调节插层聚合的关键在于调整石墨和插层剂的结构以实现更好的相互作用。还综述了所得石墨烯/聚合物复合材料的潜在应用,包括导电性、电磁吸收、机械性能和热导率。此外,还讨论了插层聚合的缺点、挑战和前景,这将对相关领域的研究人员有所帮助。