Sun Chenxuan, Zheng Ying, Xu Shanshan, Ni Lingling, Li Xing, Shan Guorong, Bao Yongzhong, Pan Pengju
State Key Laboratory of Chemical Engineering, College of Chemical and Biological Engineering, Zhejiang University, 38 Zheda Road, Hangzhou 310027, China.
Institute of Zhejiang University-Quzhou, 78 Jiuhua Boulevard North, Quzhou 324000, China.
ACS Macro Lett. 2021 Aug 17;10(8):1023-1028. doi: 10.1021/acsmacrolett.1c00394. Epub 2021 Jul 21.
Stereocomplex (SC) crystallization between polymer enantiomers has opened a promising avenue for preparing high-performance materials. However, high-crystallinity SCs are difficult to achieve for high-molecular-weight (HMW) enantiomeric blends of chiral polymers [e.g., poly(lactic acid)]. Despite extensive studies, why HMW enantiomeric blends have difficulty in SC crystallization has not been clarified. Herein, we chose the HMW poly(l-lactic acid)/poly(d-lactic acid) (PLLA/PDLA) 1/1 blend as the model system and demonstrated the crucial role of chain entanglement in regulating SC crystallization. PLLA/PDLA blends with various entanglement degrees were prepared by freeze-drying. We observed that disentangling promoted not only the crystallization rate but also the crystallinity of SCs in both the nonisothermal and isothermal processes. The less-entangled samples crystallized exclusively as the high-crystallinity SCs at different temperatures, in contrast to the predominant homocrystallization that occurred in the common entangled samples. This study provides deep insight into the SC crystallization mechanism of polymers and paves the way for future research attempting to prepare SC materials.
聚合物对映体之间的立体复合物(SC)结晶为制备高性能材料开辟了一条充满前景的途径。然而,对于手性聚合物[如聚乳酸]的高分子量(HMW)对映体共混物而言,难以实现高结晶度的SC。尽管已有广泛研究,但HMW对映体共混物在SC结晶方面存在困难的原因仍未阐明。在此,我们选择HMW聚(L-乳酸)/聚(D-乳酸)(PLLA/PDLA)1/1共混物作为模型体系,并证明了链缠结在调节SC结晶中的关键作用。通过冷冻干燥制备了具有不同缠结程度的PLLA/PDLA共混物。我们观察到,在非等温过程和等温过程中,解缠结不仅提高了结晶速率,还提高了SC的结晶度。与常见缠结样品中主要发生的均相成核不同,缠结程度较低的样品在不同温度下仅以高结晶度的SC形式结晶。这项研究为聚合物的SC结晶机制提供了深入见解,并为未来制备SC材料的研究铺平了道路。