Laboratory for Advanced Carbon Nanomaterials, Kazan Federal University , Kremlyovskaya str. 18, Kazan 420008, Russian Federation.
ACS Appl Mater Interfaces. 2017 Apr 5;9(13):11909-11917. doi: 10.1021/acsami.7b02243. Epub 2017 Mar 22.
The quality of polymer composite materials depends on the distribution of the filler in the polymer matrix. Due to the presence of the oxygen functional groups, graphene oxide (GO) has a strong affinity to epoxy resins, providing potential opportunity for the uniform distribution of GO sheets in the matrix. Another advantage of GO over its nonoxidized counterpart is its ability to exfoliate to single-atomic-layer sheets in water and in some organic solvents. However, these advantages of GO have not yet been fully realized due to the lack of the methods efficiently introducing GO into the epoxy resin. Here we develop a novel homogeneous liquid phase transfer method that affords uniform distribution, and fully exfoliated condition of GO in the polymer matrix. The most pronounced alteration of properties of the cured composites is registered at the 0.10%-0.15% GO content. Addition of as little as 0.10% GO leads to the increase of the Young's modulus by 48%. Moreover, we demonstrate successful introduction of GO into the epoxy matrix containing an active diluent-modifier; this opens new venues for fabrication of improved GO-epoxy-modifier composites with a broad range of predesigned properties. The experiments done on reproducing the two literature methods, using alternative GO introduction techniques, lead to either decrease or insignificant increase of the Young's modulus of the resulting GO-epoxy composites.
聚合物复合材料的质量取决于填料在聚合物基体中的分布。由于含氧官能团的存在,氧化石墨烯(GO)与环氧树脂具有很强的亲和力,为 GO 片在基体中的均匀分布提供了潜在的机会。与未氧化的 GO 相比,GO 的另一个优点是它能够在水中和一些有机溶剂中剥离成单层原子片。然而,由于缺乏将 GO 有效引入环氧树脂的方法,GO 的这些优势尚未得到充分实现。在这里,我们开发了一种新颖的均相液相转移方法,可在聚合物基体中提供均匀的 GO 分布和完全剥离状态。在 0.10%-0.15% GO 含量下,复合材料性能的最显著变化。添加少至 0.10%的 GO 可使杨氏模量增加 48%。此外,我们成功地将 GO 引入含有活性稀释剂-改性剂的环氧树脂基体中;这为制备具有广泛预定性能的改进型 GO-环氧-改性剂复合材料开辟了新途径。在复制两种文献方法的实验中,使用替代的 GO 引入技术,要么导致所得 GO-环氧复合材料的杨氏模量降低,要么导致杨氏模量增加不明显。