Leonés Adrián, Peponi Laura, Lieblich Marcela, Benavente Rosario, Fiori Stefano
Instituto de Ciencia y Tecnología de Polímeros (ICTP-CSIC), C/Juan de la Cierva 3, 28006 Madrid, Spain.
Interdisciplinary Platform for "Sustainable Plastics towards a Circular Economy" (SUSPLAST-CSIC), 28006 Madrid, Spain.
Polymers (Basel). 2020 Dec 13;12(12):2975. doi: 10.3390/polym12122975.
In the present work, fiber mats of poly(lactic acid), PLA, plasticized by different amounts of oligomer lactic acid, OLA, were obtained by electrospinning in order to investigate their long term hydrolytic degradation. This was performed in a simulated body fluid for up to 352 days, until the complete degradation of the samples is reached. The evolution of the plasticized electrospun mats was followed in terms of morphological, thermal, chemical and crystalline changes. Mass variation and water uptake of PLA-based electrospun mats, together with pH stability of the immersion media, were also studied during the test. The results showed that the addition of OLA increases the hydrolytic degradation rate of PLA electrospun fiber mats. Moreover, by adding different amounts of OLA, the time of degradation of the electrospun fiber mats can be modulated over the course of a year. Effectively, by increasing the amount of OLA, the diameter of the electrospun fibers decreases more rapidly during degradation. On the other hand, the degree of crystallinity and the dimension of the α crystals of the electrospun fiber mats are highly affected not only by the presence but also by the amount of OLA during the whole process.
在本研究中,通过静电纺丝制备了由不同量的低聚乳酸(OLA)增塑的聚乳酸(PLA)纤维毡,以研究其长期水解降解性能。这一过程在模拟体液中进行长达352天,直至样品完全降解。从形态、热、化学和结晶变化方面跟踪增塑静电纺丝毡的演变。在测试过程中,还研究了基于PLA的静电纺丝毡的质量变化、吸水率以及浸泡介质的pH稳定性。结果表明,OLA的添加提高了PLA静电纺丝纤维毡的水解降解速率。此外,通过添加不同量的OLA,可以在一年的时间内调节静电纺丝纤维毡的降解时间。实际上,通过增加OLA的量,静电纺丝纤维在降解过程中的直径下降得更快。另一方面,在整个过程中,静电纺丝纤维毡的结晶度和α晶体尺寸不仅受到OLA的存在影响,还受到其含量的高度影响。