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Crystallization and Stereocomplexation of PLA-mb-PBS Multi-Block Copolymers

机译:PLA-mb-PBS多嵌段共聚物的结晶和立体络合

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摘要

The crystallization and morphology of PLA--PBS copolymers and their corresponding stereocomplexes were studied. The effect of flexible blocks (i.e., polybutylene succinate, PBS) on the crystallization of the copolymers and stereocomplex formation were investigated using polarized light optical microscopy (PLOM), differential scanning calorimetry (DSC), infrared spectroscopy (FTIR), and carbon-13 nuclear magnetic resonance spectroscopy (C-NMR). The PLA and PBS multiple blocks were miscible in the melt and in the glassy state. When the PLA--PBS copolymers are cooled from the melt, the PLA component crystallizes first creating superstructures, such as spherulites or axialites, which constitute a template within which the PBS component has to crystallize when the sample is further cooled down. The Avrami theory was able to fit the overall crystallization kinetics of both semi-crystalline components, and the values for both blocks in all the samples had a correspondence with the superstructural morphology observed by PLOM. Solution mixtures of PLLA--PBS and PLDA--PBS copolymers were prepared, as well as copolymer/homopolymer blends with the aim to study the stereocomplexation of PLLA and PDLA chain segments. A lower amount of stereocomplex formation was observed in copolymer mixtures as compared to neat L/D stereocomplexes. The results show that PBS chain segments perturb the formation of stereocomplexes and this perturbation increases with the amount of PBS in the samples. However, when relatively low amounts of PBS in the copolymer blends are present, the rate of stereocomplex formation is enhanced. This effect dissappears when higher amounts of PBS are present. The stereocomplexation was confirmed by FTIR and solid state C-NMR analyses.
机译:研究了PLA-PBS共聚物及其相应的立体配合物的结晶和形态。使用偏光光学显微镜(PLOM),差示扫描量热法(DSC),红外光谱(FTIR)和碳13研究了柔性嵌段(即聚丁二酸丁二酯,PBS)对共聚物结晶和立体络合物形成的影响。核磁共振波谱(C-NMR)。 PLA和PBS多个嵌段在熔融状态和玻璃态下可混溶。当PLA-PBS共聚物从熔体中冷却时,PLA组分首先结晶,形成超晶格,如球晶或轴晶,它们构成了模板,当样品进一步冷却时,PBS组分必须在其中结晶。 Avrami理论能够拟合两个半结晶成分的整体结晶动力学,并且所有样品中两个嵌段的值都与PLOM观察到的超微结构形态相对应。制备了PLLA-PBS和PLDA-PBS共聚物的溶液混合物以及共聚物/均聚物共混物,目的是研究PLLA和PDLA链段的立体配合。与纯的L / D立体配合物相比,在共聚物混合物中观察到较少的立体配合物形成。结果表明,PBS链段干扰了立体复合物的形成,并且这种干扰随着样品中PBS的量的增加而增加。但是,当共聚物共混物中存在相对少量的PBS时,立体络合物的形成速率会提高。当存在更多量的PBS时,此效果消失。通过FTIR和固态C-NMR分析证实了立体配合。

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