首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Competing Stereocomplexation and Homocrystallization of Poly(L-lactic acid)/Poly(D-lactic acid) Racemic Mixture: Effects of Miscible Blending with Other Polymers
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Competing Stereocomplexation and Homocrystallization of Poly(L-lactic acid)/Poly(D-lactic acid) Racemic Mixture: Effects of Miscible Blending with Other Polymers

机译:聚(L-乳酸)/聚(D-乳酸)外消旋混合物的竞争立体双重和均晶体:与其他聚合物混合混合的影响

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摘要

Promoting the stereocomplexation ability of high-molecular-weight poly(L-lactic acid) (PLLA) and poly(D-lactic acid) (PDLA) is an efficient way to improve the thermal resistance of the resulting materials. Herein, we studied the competing crystallization kinetics, polymorphic crystalline structure, and lamellae structure of the PLLA/PDLA component in its miscible blends with poly(vinyl acetate) (PVAc) and proposed a method to improve the stereocomplexation ability of PLLA and PDLA through miscible blending with the other polymer. Crystallization of the PLLA/PDLA component is suppressed after the addition of PVAc, due to the dilution effect. The stereocomplexation ability of PLLA and PDLA is enhanced by blending with PVAc; this becomes more obvious at a high PVAc content (>= 50 wt %) but less significant with the further increase of PLLA, PDLA molecular weights. Almost exclusive formation of SCs is achieved for PLLA and PDLA after blending with a large proportion of PVAc (e.g., 75 wt %). Incorporation of PVAc also facilitates the HC-to-SC structural reorganization upon heating. The increased chain mobility, decreased equilibrium melting point, and enhanced intermolecular interactions may account for the preferential stereocomplexation in PLLA/PDLA/PVAc blends.
机译:促进高分子量聚(L-乳酸)(PLLA)和聚(D-乳酸)(PDLA)的立体络能力是提高所得材料热阻的有效方法。在本文中,我们研究了竞争结晶动力学,多晶型的晶体结构,并与聚(醋酸乙烯酯)在其可混溶共混物的PLLA / PDLA部件的薄片结构(聚醋酸乙烯酯)和提出了提高通过可混溶的PLLA和PDLA的立体络合能力的方法与其他聚合物混合。由于稀释效应,加入PVAC后抑制了PLLA / PDLA组分的结晶。通过用PVAC混合来增强PLLA和PDLA的立体络能力;在高pVAC含量(> = 50wt%)下,这变得更加明显,但随着PLLA,PDLA分子量的进一步增加而不太显着。在用大比例的PVAC(例如,75wt%)混合后,对PLLA和PDLA实现了SCs的几乎独占形成。 PVAC的掺入也有助于加热时的HC-SC结构重组。增加的链迁移率,降低平衡熔点,增强的分子间相互作用可能考虑PLLA / PDLA / PVAC共混物中的优先立体双重。

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