首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Bioresource-based blends of poly(3-hydroxybutyrate-co-4-hydroxybutyrate) and stereocomplex polylactide with improved rheological and mechanical properties and enzymatic hydrolysis
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Bioresource-based blends of poly(3-hydroxybutyrate-co-4-hydroxybutyrate) and stereocomplex polylactide with improved rheological and mechanical properties and enzymatic hydrolysis

机译:聚(3-羟基丁酸酯-co-4-羟基丁酸酯)和立构复合聚乳酸的基于生物资源的共混物,具有改善的流变和机械性能以及酶促水解

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摘要

Novel bioresource-based blends of poly(3-hydroxybutyrate-co-4-hydroxybutyrate) (P34HB) and stereocomplex polylactide (sc-PLA) were prepared herein via a simple melt blending method at various sc-PLA loadings at the temperature above the melting points of poly(L-lactide) (PLLA) and poly(D-lactide) (PDLA), and much lower than that of sc-PLA. Wide-angle X-ray diffraction and differential scanning calorimetry results verified that complete stereocomplex crystallites without any evidence of the formation of homocrystallites in the P34HB melt could be achieved. Scanning electron microscopy observation indicated that sc-PLA was nicely dispersed in the P34HB matrix as spherical particles; the dispersed size of the sc-PLA did not display a pronounced increase with an increase in the content of PLLA and PDLA. As solid fillers, sc-PLA could reinforce the P34HB matrix in a relatively wider temperature region. Accordingly, the rheological and mechanical properties of P34HB were greatly improved after blending with sc-PLA, particularly when a percolation network structure of spherical filler (a characteristic solid or gel-like structure) had formed in the blends. Moreover, the most intriguing result was that the enzymatic hydrolysis rates had been clearly enhanced in the P34HB/sc-PLA blends than that in the neat P34HB, which may be of significant use and importance for the wider practical application of biosourced P34HB. The erosion mechanism of the neat P34HB and the P34HB/sc-PLA blends was discussed further.
机译:本文通过简单的熔融共混方法,在高于熔融温度的各种sc-PLA负载下,通过简单的熔融共混方法,制备了聚(3-羟基丁酸酯-co-4-羟基丁酸酯)(P34HB)和立体复合聚丙交酯(sc-PLA)的新型生物资源基混合物。聚(L-丙交酯)(PLLA)和聚(D-丙交酯)(PDLA)的分子点,远低于sc-PLA。广角X射线衍射和差示扫描量热法的结果证明,可以得到完整的立体复合微晶,而没有任何证据表明P34HB熔体中会形成均晶。扫描电子显微镜观察表明,sc-PLA以球形颗粒良好地分散在P34HB基质中。 sc-PLA的分散尺寸没有随PLLA和PDLA含量的增加而显着增加。作为固体填料,sc-PLA可以在相对较宽的温度范围内增强P34HB基质。因此,在与sc-PLA共混后,P34HB的流变和机械性能得到了极大的改善,特别是当在共混物中形成球形填料的渗透网络结构(特征性固体或凝胶状结构)时。此外,最引人入胜的结果是,与纯P34HB相比,P34HB / sc-PLA共混物中的酶水解速率明显提高,这对于生物来源的P34HB的更广泛的实际应用可能具有重要的用途和重要性。进一步讨论了纯P34HB和P34HB / sc-PLA共混物的腐蚀机理。

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