Panova Tatiana V, Efimova Anna A, Berkovich Anna K, Efimov Aleksander V
Faculty of Chemistry, Lomonosov Moscow State University Leninskiye Gory 1-3 119991 Moscow Russia
RSC Adv. 2020 Jun 23;10(40):24027-24036. doi: 10.1039/d0ra04150e. eCollection 2020 Jun 19.
Composite films containing poly(vinyl alcohol) filled with different amounts of graphene oxide (2 and 4 wt%) were prepared by the solution casting technique, and the mechanical properties of the resulting materials were modified with different amounts of glycerol as a plasticizer. Two series of pure poly(vinyl alcohol) and graphene oxide-loaded films with fixed amounts of water were used for modification with glycerol, since water can also serve as a plasticizer for poly(vinyl alcohol). The morphology and physical properties of the plasticized and non-plasticized composites were studied; tensile tests were performed to investigate and compare their mechanical properties. Glycerol addition does not affect the excellent compatibility of the filler with the polymer matrix and uniform distribution of graphene oxide in poly(vinyl alcohol). For poly(vinyl alcohol)/graphene oxide films an increase of the Young's modulus and yield stress was found with an increase of the filler content; the Young's modulus for poly(vinyl alcohol) filled with 4 wt% of graphene oxide is almost two times higher than that of the pure polymer. Simultaneously, a sharp decrease of the elongation at break from 80% for pure PVA to about 5% for the PVA/GO composite with 4 wt% of GO is observed, and the film's brittleness dramatically increases. It was shown that the addition of glycerol to the composite films leads both to the Young's modulus decrease and tensile energy at break increase; here the Young's modulus decreases by 18 times after addition of 20 wt% of glycerol to the poly(vinyl alcohol) film filled with 4 wt% of graphene oxide. Thus, the use of plasticizer results in a significant increase of the ductile properties of graphene oxide filled poly(vinyl alcohol) composite films, and the higher the water content in the composite film, the more drastic the increase of the ductile properties observed.
通过溶液浇铸技术制备了含有不同含量氧化石墨烯(2重量%和4重量%)的聚乙烯醇复合薄膜,并使用不同量的甘油作为增塑剂对所得材料的机械性能进行改性。由于水也可作为聚乙烯醇的增塑剂,因此使用了两个系列的含有固定水量的纯聚乙烯醇和负载氧化石墨烯的薄膜来用甘油进行改性。研究了增塑和未增塑复合材料的形态和物理性能;进行拉伸试验以研究和比较它们的机械性能。添加甘油不会影响填料与聚合物基体的优异相容性以及氧化石墨烯在聚乙烯醇中的均匀分布。对于聚乙烯醇/氧化石墨烯薄膜,发现随着填料含量的增加,杨氏模量和屈服应力增加;填充4重量%氧化石墨烯的聚乙烯醇的杨氏模量几乎比纯聚合物高两倍。同时,观察到断裂伸长率从纯聚乙烯醇的80%急剧下降到含有4重量%氧化石墨烯的聚乙烯醇/氧化石墨烯复合材料的约5%,并且薄膜的脆性显著增加。结果表明,向复合薄膜中添加甘油会导致杨氏模量降低和断裂拉伸能增加;在此,向填充4重量%氧化石墨烯的聚乙烯醇薄膜中添加20重量%甘油后,杨氏模量降低了18倍。因此,使用增塑剂会导致氧化石墨烯填充的聚乙烯醇复合薄膜的韧性性能显著提高,并且复合薄膜中的含水量越高,观察到的韧性性能增加越显著。