Cristea Mariana, Ionita Daniela, Iftime Manuela Maria
"Petru Poni" Institute of Macromolecular Chemistry, Aleea Grigore Ghica Voda 41A, 700487 Iasi, Romania.
Materials (Basel). 2020 Nov 23;13(22):5302. doi: 10.3390/ma13225302.
Interest in renewable polymers increased exponentially in the last decade and in this context poly(lactic acid) (PLA) became the leader mainly for practical reasons. Nevertheless, it is outstanding also from a scientific point of view, because its thermal and morphological properties are offering challenging new insights. With regard to dynamic mechanical analysis (DMA), PLA does not have the classical behavior of a thermoplastic polymer. Often, overlapping events (enthalpic relaxation, glass transition and crystallization) that occur as the temperature increases make the DMA result of a PLA look inexplicable even for polymer scientists. This review offers a perspective of the main phenomena that can be revealed in a DMA experiment and systematizes the information that can be obtained for every region (glassy, glass transition, rubbery, cold-crystallization and melting). Also, some unusual patterns registered in some cases will be commented upon. The review intends to offer indices that one should pay attention to in the interpretation of a DMA experiment, even if the investigator has only basic skills with DMA investigations.
在过去十年中,对可再生聚合物的兴趣呈指数级增长,在这种背景下,聚乳酸(PLA)主要由于实际原因成为了领军者。然而,从科学角度来看它也很突出,因为其热性能和形态学性能提供了具有挑战性的新见解。关于动态热机械分析(DMA),PLA并不具有热塑性聚合物的经典行为。通常,随着温度升高而发生的重叠事件(焓松弛、玻璃化转变和结晶)使得即使对于聚合物科学家来说,PLA的DMA结果看起来也难以解释。本综述提供了在DMA实验中可以揭示的主要现象的观点,并对每个区域(玻璃态、玻璃化转变、橡胶态、冷结晶和熔融)可获得的信息进行了系统化整理。此外,还将对某些情况下记录到的一些异常模式进行评论。本综述旨在提供在解释DMA实验时应注意的指标,即使研究者仅具备DMA研究的基本技能。