Fernández M Jesús, Fernández M Dolores
Department of Polymer Science and Technology, Faculty of Chemistry, University of the Basque Country UPV/EHU, Paseo Manuel Lardizábal 3, 20018 San Sebastián, Spain.
Polymers (Basel). 2020 Feb 7;12(2):364. doi: 10.3390/polym12020364.
In clay/polymer nanocomposites, the crystallization behavior and kinetics of the polymer can be affected by the presence of clay, its content and the degree of miscibility between the clay and the polymer matrix. The effect of two different organomodified vermiculites on the non-isothermal cold crystallization and melting behavior of polylactide (PLA) was studied by differential scanning calorimetry (DSC). In the presence of vermiculites, the cold crystallization of PLA occurred earlier, particularly for the highest content of the most miscible organovermiculite with PLA. The cold crystallinity of PLA decreased at low heating rates, notably at high organoclay loadings, and increased at high heating rates, especially at low vermiculite contents. According to the crystallization half-time, crystallization rate coefficient (CRC), and crystallization rate parameter (CRP) approaches, the cold crystallization rate of PLA increased by incorporating vermiculites, with the effect being most noteworthy for the vermiculite showing better compatibility. The Mo model was successful in describing the non-isothermal cold crystallization kinetics of the PLA/vermiculite composites. The melting behavior was affected by the heating rate and the type and content of clay. The nucleating effect of the most compatible clay resulted in the less perfect crystallites. The activation energy was evaluated using the Kissinger and Takhor methods.
在黏土/聚合物纳米复合材料中,聚合物的结晶行为和动力学可能会受到黏土的存在、其含量以及黏土与聚合物基体之间的混溶程度的影响。通过差示扫描量热法(DSC)研究了两种不同的有机改性蛭石对聚乳酸(PLA)非等温冷结晶和熔融行为的影响。在蛭石存在的情况下,PLA的冷结晶提前发生,特别是对于与PLA混溶性最佳且含量最高的有机蛭石而言。在低升温速率下,PLA的冷结晶度降低,在高有机黏土负载量时尤为明显;而在高升温速率下,冷结晶度增加,特别是在蛭石含量较低时。根据结晶半衰期、结晶速率系数(CRC)和结晶速率参数(CRP)方法,加入蛭石后PLA的冷结晶速率增加,对于显示出更好相容性的蛭石,这种效果最为显著。Mo模型成功地描述了PLA/蛭石复合材料的非等温冷结晶动力学。熔融行为受升温速率以及黏土的类型和含量的影响。相容性最佳的黏土的成核作用导致结晶度较低。使用基辛格法和塔克霍尔法评估了活化能。