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Effect of Storage Conditions on the Thermal Stability and Crystallization Behaviors of Poly(L-Lactide)/Poly(D-Lactide)

机译:储存条件对聚(L-丙交酯)/聚(D-丙交酯)的热稳定性和结晶行为的影响

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摘要

Polylactide (PLA) is a biodegradable thermoplastic aliphatic polyester. The thermal stability and crystallization behavior of PLA are extremely sensitive to storage, processing, and usage conditions. This work systematically studied the thermal stability and crystallization behavior of poly(L-lactide) (PLLA), poly(D-lactide) (PDLA), and a PLLA/PDLA (LD) blend, which were stored under two sets of laboratory storage conditions: (1) stored in a vacuum-free desiccator and (2) stored in vacuum-sealed bags. Both were stored at room temperature for 3 years. Gel permeation chromatography results revealed that the PLLA, PDLA, and LD samples hydrolyzed slowly when stored in vacuum-sealed bags and degraded significantly when stored in a vacuum-free desiccator; this process significantly reduced the thermal stability of the samples stored in the vacuum-free desiccator. Owing to hydrolysis, the levorotation and dextrorotation (L- and D-) molecular chains were shortened; consequently, more nuclei were formed, and this caused the melting points of the PLLA, PDLA, and LD samples to decrease and the melting enthalpy of the crystals in these samples to increase. Wide-angle X-ray diffraction analysis revealed that when the L- and D- molecular chains were packed side by side to form stereocomplex crystals and the randomly arranged L- and D- molecular chains were easy hydrolyzed and degraded, this interfered with the formation of homocrystals in LD. When PLLA, PDLA, and LD samples are stored in a vacuum-free desiccator, they will be significantly hydrolyzed, resulting in the formation of only stereocomplex crystals, and no homocrystals are observed.
机译:聚丙环(PLA)是可生物降解的热塑性脂族聚酯。 PLA的热稳定性和结晶行为对储存,加工和使用条件非常敏感。该工作系统地研究了聚(L-丙交酯)(PLLA),聚(D-丙交酯)(PDLA)和PLLA / PDLA(LD)混合物的热稳定性和结晶行为,其储存在两组实验室储存下条件:(1)储存在真空干燥器中,(2)储存在真空密封袋中。两者都在室温下储存3年。凝胶渗透色谱结果显示,当储存在真空密封袋中时,PLLA,PDLA和LD样品缓慢地水解,并在无效的干燥器中储存时显着降解;该方法显着降低了无吸尘器中储存的样品的热稳定性。由于水解,缩短了鼻除和折射(L-和D-)分子链;因此,形成更多核,这导致PLLA,PDLA和LD样品的熔点降低和这些样品中晶体的熔化焓增加。广角X射线衍射分析显示,当L-和D-分子链并排填充以形成立体络合物晶体,随机排列的L-和D-分子链易于水解和降解,这会干扰形成在LD中的同种主义。当PLLA,PDLA和LD样品储存在无真空干燥器中时,它们将被显着水解,导致仅形成立体络合物晶体,并且没有观察到同种晶体的形成。

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