Wang Zhifeng, Tong Jun, Li Wei, Zhang Haichen, Hu Manfeng, Chen Haichu, He Hui
School of Mechatronic Engineering and Automation, Foshan University, Foshan 528000, China.
School of Materials Science and Engineering, South China University of Technology, Guangzhou 510641, China.
Polymers (Basel). 2021 Sep 14;13(18):3095. doi: 10.3390/polym13183095.
Polypropylene/graphite intercalation compound (PP/GIC) composites are prepared via melt mixing at three different temperatures (180, 200, and 220 °C). The dispersion of GICs in the composites is clearly improved due to the increased interlamellar spacing caused by in situ expansion of GICs at higher temperatures, which facilitates the intercalation of PP molecular chains into the GIC galleries. As a result, the PP/GIC composite with 10 wt% GICs prepared at 220 °C (PG220) presents a dielectric constant of about 1.3 × 10 at 10 Hz, which is about six orders higher than that of the composite prepared at 180 °C (PG180). Moreover, the thermal conductivity of the PG220 sample (0.63 WmK) is 61.5% higher than that of the PG180 sample. The well-dispersed GICs accelerates the crystallization of PP by increasing the nucleation point and enhances the thermal stability of the composites. The PG220 sample shows a Young's modulus that is about 21.2% higher than that of the PG180 samples. The results provide an efficient approach for fabricating polymer/GIC composites without complex exfoliation and dispersion processes.
聚丙烯/石墨插层化合物(PP/GIC)复合材料是通过在三种不同温度(180、200和220°C)下熔融共混制备的。由于在较高温度下GIC原位膨胀导致层间距增加,GIC在复合材料中的分散明显改善,这有利于PP分子链插入GIC层间。结果,在220°C下制备的含10 wt% GIC的PP/GIC复合材料(PG220)在10 Hz时的介电常数约为1.3×10,比在180°C下制备的复合材料(PG180)高约六个数量级。此外,PG220样品的热导率(0.63 WmK)比PG180样品高61.5%。分散良好的GIC通过增加成核点加速PP的结晶,并提高复合材料的热稳定性。PG220样品的杨氏模量比PG180样品高约21.2%。这些结果为制备聚合物/GIC复合材料提供了一种无需复杂剥离和分散过程的有效方法。