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Crystallization kinetics as a sensitive tool to detect degradation in poly(lactide)/poly(ε-caprolactone)/ PCL-co-PC copolymers blends

机译:结晶动力学作为检测聚(丙交酯)/聚(ε-己内酯)/ PCL-CO-Co-PC共聚物共混物中的降解的敏感工具

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摘要

Poly(lactide)/poly(epsilon-caprolactone) blends (PLA/PCL) with composition 80/20 (w/w%) are immiscible but biodegradable and therefore often studied in the literature. We have prepared 80/20 PLA/PCL blends with and without poly(epsilon-caprolactone)-co-poly(carbonate) copolymers (block and random). The blends were prepared both by melt extrusion and by solution blending. The concentration of PCL-co-PC copolymers added to the blends was 2 wt%. Compression molded sheets and solvent cast films were evaluated by GPC (Gel Permeation Chromatography), TGA (Thermogravimetric Analysis), SEM (Scanning Electron Microscopy), PLOM (Polarized Light Optical Microscopy) and DSC (Differential Scanning Calorimetry). Copolymer addition causes a reduction of molecular weight in melt mixed blends. In particular, the random copolymer (PCL-ran-PC) causes the highest molecular weight reduction, since it has lower thermal stability, as shown by TGA. PLOM experiments show that these degraded PLA chains in melt-mixed blends can nucleate and grow faster than similar but undegraded PLA chains in solution-mixed blends. As a result, the PLA phase within melt mixed blends containing PCL-co-PC copolymers shows a higher tendency to crystallize during both isothermal and non-isothermal DSC experiments. Upon molecular weight reduction in melt mixed blends containing copolymers, PLA chains have a higher mobility resulting in faster diffusion towards the growing crystal front. Our results show crystallization kinetic measurements, performed by PLOM or DSC, are useful tools to qualitatively detect molecular weight changes produced by degradation of PLA chains, when the molecular weight reduction is not large enough to decrease T-m values. (C) 2019 Elsevier Ltd. All rights reserved.
机译:将聚(丙交酯)/聚(ε-己内酯)共混物(PLA / PCL)与组合物80/20(w / w%)不混溶,但可生物降解,因此通常在文献中研究。我们制备了80/20 PLA / PCL共混物,无阳性(ε-己内酯)-CO-聚(碳酸盐)共聚物(嵌段和随机)。通过熔融挤出和通过溶液混合制备共混物。加入到共混物中的PCL-Co-PC共聚物的浓度为2wt%。通过GPC(凝胶渗透色谱),TGA(热标分析),SEM(扫描电子显微镜),PLOM(偏振光光学显微镜)和DSC(差示扫描量热法)评估压缩模塑片和溶剂浇铸膜。共聚物添加导致熔融混合共混物中的分子量降低。特别地,随机共聚物(PCL-RAN-PC)导致最高的分子量降低,因为它具有较低的热稳定性,如TGA所示。 PLOM实验表明,这些熔融混合共混物中的这些降解的PLA链可以核心,并且比溶液混合共混物中的相似但未扩建的PLA链快得多。结果,含有PCL-CO-PC共聚物的熔融混合共混物内的PLA相显示出在等温和非等温DSC实验期间结晶的更高趋势。在含有共聚物的熔融混合共混物中的分子量减少后,PLA链具有更高的迁移率,导致朝向生长的晶体前面的更快扩散。我们的结果表明,由PLOM或DSC进行的结晶动力学测量是有用的工具,用于定性检测通过降解PLA链产生的分子量变化,当分子量还原足够大以降低T-M值时。 (c)2019 Elsevier Ltd.保留所有权利。

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  • 来源
    《Polymer Degradation and Stability》 |2019年第10期|108939.1-108939.13|共13页
  • 作者单位

    Univ Bologna UNIBO Dipartimento Chim Ind Toso Montanari Viale Risorgimento 4 I-40136 Bologna Italy|Univ Basque Country Fac Chem POLYMAT & Polymer Sci & Technol Dept UPV EHU Paseo Manuel de Lardizabal 3 Donostia San Sebastian 20018 Spain;

    Univ Bologna UNIBO Dipartimento Chim Ind Toso Montanari Viale Risorgimento 4 I-40136 Bologna Italy|Univ Basque Country Fac Chem POLYMAT & Polymer Sci & Technol Dept UPV EHU Paseo Manuel de Lardizabal 3 Donostia San Sebastian 20018 Spain;

    Univ Basque Country Polytech Sch Chem & Environm Engn Dept UPV EHU Donostia San Sebastian 20018 Spain;

    Univ Basque Country Fac Chem POLYMAT & Polymer Sci & Technol Dept UPV EHU Paseo Manuel de Lardizabal 3 Donostia San Sebastian 20018 Spain;

    Univ Bologna UNIBO Dipartimento Chim Ind Toso Montanari Viale Risorgimento 4 I-40136 Bologna Italy;

    Univ Basque Country Fac Chem POLYMAT & Polymer Sci & Technol Dept UPV EHU Paseo Manuel de Lardizabal 3 Donostia San Sebastian 20018 Spain|Ikerbasque Basque Fdn Sci Bilbao Spain;

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  • 正文语种 eng
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  • 关键词

    poly(lactide)-poly(epsilon-caprolactone) blends; Crystallization; Solution blending; Melt blending;

    机译:聚(丙交酯) - 聚(ε-己内酯)共混物;结晶;溶液混合;熔化混合;

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