Sieradzka Marta, Fabia Janusz, Biniaś Dorota, Fryczkowski Ryszard, Janicki Jarosław
Institute of Textile Engineering and Polymer Materials, University of Bielsko-Biala, 43-309 Bielsko-Biala, Poland.
Polymers (Basel). 2020 Jun 30;12(7):1468. doi: 10.3390/polym12071468.
Reduced graphene oxide (rGO) was used to obtain Polystyrene (PS)/rGO nanocomposites via in-situ suspension polymerization. The main goal of the article was to determine how rGO influences the morphology and thermal properties of PS beads. The obtained samples were studied by means of a scanning electron microscope (SEM), and calorimetric and thermogravimetric analysis (DCS, TGA). It was proven that the addition of rGO, due to the presence of polar functional groups, causes significant changes in bead sizes and size distribution, and in their morphology (on the surface and in cross-section). The increasing amount of rGO in the polymer matrix increased the size of beads from 0.36 to 3.17 mm for pure PS and PS with 0.2 wt% rGO content, respectively. PS/rGO nanocomposites are characterized by distinctly improved thermostability, which is primarily expressed in the increase in their decomposition temperature. For a sample containing 0.3 wt% rGO, the difference is more than 12 °C in comparison to pure PS beads.
通过原位悬浮聚合,使用还原氧化石墨烯(rGO)制备聚苯乙烯(PS)/rGO纳米复合材料。本文的主要目的是确定rGO如何影响PS珠粒的形态和热性能。通过扫描电子显微镜(SEM)、量热分析和热重分析(DCS、TGA)对所得样品进行了研究。结果表明,由于极性官能团的存在,rGO的添加导致珠粒尺寸和尺寸分布及其形态(表面和横截面)发生显著变化。对于纯PS和rGO含量为0.2 wt%的PS,聚合物基体中rGO含量的增加使珠粒尺寸分别从0.36 mm增大到3.17 mm。PS/rGO纳米复合材料的特点是热稳定性明显提高,这主要表现为其分解温度升高。对于含有0.3 wt% rGO的样品,与纯PS珠粒相比,差异超过12℃。