Fully Bio-Based and Supertough PLA Blends via a Novel Interlocking Strategy Combining Strong Dipolar Interactions and Stereocomplexation
作者:Xiangjian Chen, Chuanxi Li, Yingli Ding, Yang Li, Jinshan Li, Liming Sun, Jie Wei, Xiaohui Wei, Hao Wang, Kunyu Zhang, Li Pan, Yue‐Sheng Li · 发表于:Macromolecules · 年份:2022 · DOI:10.1021/acs.macromol.2c00266 · 被引用次数:46 · 研究领域:biodegradable polymer synthesis and properties、Nanocomposite Films for Food Packaging、Microplastics and Plastic Pollution
Optimizing interfacial compatibility is one of the core issues for constructing high-performance green poly(lactic acid) (PLA) blends. Herein, we prepared a poly(epichlorohydrin)- b -poly( d -lactic acid) (PECH- b -PDLA) diblock copolymer as an efficient compatibilizer for poly( l -lactic acid)/poly(epichlorohydrin) (PLLA/CHR) blends. The PECH- b -PDLA enabled the blends to form unique interlocks among the chains through combining the strong dipolar interaction and PLLA/PDLA stereocomplexation (SC). This strategy endows the PLLA/CHR blend with a unique “co-continuous” structure composed of CHR particles as the core and a bilayer shell formed by the PECH entanglement layer with strong dipolar interaction and a rigid SC thin layer. Physical properties of the blends were remarkably improved by a co-continuous structure with enhanced interfacial adhesion between phases. The optimum formulation showed unprecedented balanced mechanical properties: a nonbroken sample with an impact strength of 106.7 kJ/m 2 and a high elongation at break of up to 467.2%; both were about 40 times those of pure PLLA. The interlocking mechanism through strong dipolar interaction and SC provides a broadly applicable and facile strategy to achieve PLA materials with superior properties for expanded industrial application.