Gu Ao, Wu Jian, Shen Liming, Zhang Xiaoyan, Bao Ningzhong
State Key Laboratory of Materials-Oriented Chemical Engineering, College of Chemical Engineering, Nanjing Tech University, Nanjing 210009, China.
Polymers (Basel). 2021 May 22;13(11):1688. doi: 10.3390/polym13111688.
The uniform dispersion of graphene oxide (GO) and strong interfacial bonding are the key factors in achieving the high mechanical strength of GO/polymer composites. It is still challenging to prepare GO/PA66 composites with uniform GO dispersion by the in situ polymerization method. In this paper, we prepare GO/PA66 salt nanocomposite by in situ precipitating PA66 salt with GO in ethanol. The GO/PA66 nanocomposite fibers are then fabricated using the as-prepared GO/PA66 salt by in situ polymerizing and melt spinning. By tuning the GO content, the tensile strength and Young's modulus of the GO/PA66 fibers are increased from 265 ± 18 to 710 ± 14 MPa (containing 0.3 wt% GO) and from 1.1 ± 0.08 to 3.8 ± 0.19 GPa (containing 0.5 wt% GO), respectively. The remarkable improvements are attributed to the uniform dispersion of GO in the GO/PA66 salt nanocomposite via ionic bonding and hydrogen bonding in the in situ precipitation process, and the covalent interfacial bonding between the GO and PA66 during the in situ polymerization process. This work sheds light on the easy fabrication of high-performance PA66-based nanocomposites.
氧化石墨烯(GO)的均匀分散和强界面结合是实现GO/聚合物复合材料高机械强度的关键因素。通过原位聚合法制备具有均匀GO分散的GO/PA66复合材料仍然具有挑战性。在本文中,我们通过在乙醇中用GO原位沉淀PA66盐来制备GO/PA66盐纳米复合材料。然后使用制备好的GO/PA66盐通过原位聚合和熔融纺丝来制造GO/PA66纳米复合纤维。通过调节GO含量,GO/PA66纤维的拉伸强度和杨氏模量分别从265±18增加到710±14 MPa(含0.3 wt% GO)和从1.1±0.08增加到3.8±0.19 GPa(含0.5 wt% GO)。这些显著的改进归因于在原位沉淀过程中通过离子键和氢键使GO在GO/PA66盐纳米复合材料中均匀分散,以及在原位聚合过程中GO与PA66之间的共价界面结合。这项工作为高性能PA66基纳米复合材料的简便制备提供了思路。