Vasileiou Alexandros A, Kontopoulou Marianna, Docoslis Aristides
Department of Chemical Engineering, Queen's University , Kingston, Ontario K7L 3N6, Canada.
ACS Appl Mater Interfaces. 2014 Feb 12;6(3):1916-25. doi: 10.1021/am404979g. Epub 2014 Jan 22.
Graphene was prepared by low temperature vacuum-assisted thermal exfoliation of graphite oxide. The resulting thermally reduced graphene oxide (TRGO) had a specific surface area of 586 m(2)/g and consisted of a mixture of single-layered and multilayered graphene. The TRGO was added to maleated linear low-density polyethylene LLDPE and to its derivatives with pyridine aromatic groups by melt compounding. The LLDPE/TRGO composites exhibited very low electrical percolation thresholds, between 0.5 and 0.9 vol %, depending on the matrix viscosity and the type of functional groups. The dispersion of the TRGO in the compatibilized composites was improved significantly, due to enhanced noncovalent interactions between the aromatic moieties grafted onto the polymer matrix and the filler. Better dispersion resulted in a slight increase in the rheological and electrical percolation thresholds, and to significant improvements in mechanical properties and thermal conductivity, compared to the noncompatibilized composites. The presence of high surface area nanoplatelets within the polymer also resulted in a substantially improved thermal stability. Compared to their counterparts containing multiwalled carbon nanotubes, LLDPE/TRGO composites had lower percolation thresholds. Therefore, lower amounts of TRGO were sufficient to impart electrical conductivity and modulus improvements, without compromising the ductility of the composites.
通过低温真空辅助热剥离氧化石墨制备了石墨烯。所得的热还原氧化石墨烯(TRGO)的比表面积为586 m²/g,由单层和多层石墨烯的混合物组成。通过熔融共混将TRGO添加到马来酸化线性低密度聚乙烯(LLDPE)及其含吡啶芳基的衍生物中。LLDPE/TRGO复合材料表现出非常低的导电渗滤阈值,介于0.5至0.9体积%之间,这取决于基体粘度和官能团类型。由于接枝到聚合物基体上的芳族部分与填料之间增强的非共价相互作用,TRGO在相容化复合材料中的分散性得到显著改善。与未相容化的复合材料相比,更好的分散导致流变和导电渗滤阈值略有增加,并使机械性能和热导率得到显著改善。聚合物中高比表面积纳米片的存在也导致热稳定性大大提高。与含有多壁碳纳米管的对应物相比,LLDPE/TRGO复合材料具有更低的渗滤阈值。因此,较低量的TRGO就足以提高导电性和模量,而不会损害复合材料的延展性。