Han Xiaobing, Chen Tao, Zhao Yuan, Gao Jie, Sang Yanan, Xiong Houhua, Chen Zhiyuan
Hubei Key Laboratory of Radiation Chemistry and Functional Materials, School of Nuclear Technology and Chemistry & Biology, Hubei University of Science and Technology, Xianning 437100, China.
Nanomaterials (Basel). 2021 Nov 6;11(11):2990. doi: 10.3390/nano11112990.
The quantitative characterization of microstructure is most desirable for the establishment of structure-property relationships in polymer nanocomposites. In this work, the effects of graphene on the microstructure, mechanical, electrical, and thermal properties of the obtained graphene/polyethylene (PE) composites were investigated. In order to reveal the structure-performance relationship of graphene/PE composites, especially for the effects of the relative free volume fraction () and interfacial interaction intensity (), positron annihilation lifetime spectroscopy (PALS) was employed for its quantitative description. The relative free volume fraction gives a good explanation of the variation for surface resistivity, melting temperature, and thermal stability, and the variation of tensile strength and thermal conductivity agree well with the results of interfacial interaction intensity . The results showed that and have a significant effect on the properties of the obtained graphene/PE composites, and the effect on the properties was revealed.
对聚合物纳米复合材料的微观结构进行定量表征对于建立结构-性能关系最为理想。在这项工作中,研究了石墨烯对所得石墨烯/聚乙烯(PE)复合材料的微观结构、力学、电学和热性能的影响。为了揭示石墨烯/PE复合材料的结构-性能关系,特别是相对自由体积分数()和界面相互作用强度()的影响,采用正电子湮没寿命谱(PALS)对其进行定量描述。相对自由体积分数很好地解释了表面电阻率、熔点温度和热稳定性的变化,拉伸强度和热导率的变化与界面相互作用强度的结果吻合良好。结果表明,和对所得石墨烯/PE复合材料的性能有显著影响,并揭示了其对性能的影响。