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Influence of poly(lactide) stereocomplexes as nucleating agents on the crystallization behavior of poly(lactide)s

机译:聚丙交酯立体配合物作为成核剂对聚丙交酯结晶行为的影响

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The influence of the addition of linear and four-arm poly(lactide) (PLA) stereocomplexes (scPLAs) on the non-isothermal and isothermal crystallization behavior of poly( L -lactide) (PLLA) and poly( D -lactide) (PDLA) from the molten state was investigated. The linear PLAs and four-arm PLA with a similar chain length for each arm were synthesized by ring-opening polymerization. The linear and four-arm scPLAs were then prepared by solution blending and characterized by ~(1) H-NMR, FTIR, and WAXD analysis. Various mass ratios of the scPLAs were subsequently added to PLLA and PDLA as nucleating agents and specimens were prepared by solution casting. The isothermal and non-isothermal crystallization behavior of the specimens was examined by differential scanning calorimetry and polarized optical microscopy. The SC crystallites effectively promoted the nucleation of the PLAs, thereby increasing the general crystallization rate of the matrix. A 10% content of stereocomplex nucleating agent increased the crystallization rate of PDLA and PLLA by more than 55% and 70%, respectively. Compared with the linear scPLA, the four-arm scPLA more strongly promoted crystallization at higher temperatures. This might be because the greater degree of branching and larger steric hindrance of the four-arm scPLA led to the formation of defective SC crystallites, which was more beneficial for adsorption of the matrix on the crystal surface and permitted the nucleation and growth at higher temperatures. These results demonstrate that scPLAs can potentially be used as nucleating agents to improve the performance and transparency of PLA films.
机译:线性和四臂聚丙交酯(PLA)立体配合物(scPLAs)的添加对聚L-丙交酯(PLLA)和聚D-丙交酯(PDLA)的非等温和等温结晶行为的影响)从熔融状态进行了研究。通过开环聚合反应合成线性PLA和每个臂具有相似链长的四臂PLA。然后通过溶液共混制备线性和四臂scPLA,并通过〜(1)H-NMR,FTIR和WAXD分析进行表征。随后将各种质量比的scPLA作为成核剂添加到PLLA和PDLA中,并通过溶液流延制备样品。通过差示扫描量热法和偏振光学显微镜检查了样品的等温和非等温结晶行为。 SC微晶有效地促进了PLA的成核,从而提高了基质的总体结晶速率。含量为10%的立体配合物成核剂分别使PDLA和PLLA的结晶速率提高了55%和70%以上。与线性scPLA相比,四臂scPLA在较高温度下更能促进结晶。这可能是因为四臂scPLA的较大支化度和较大的位阻导致形成有缺陷的SC微晶,这对于基质在晶体表面的吸附更有利,并允许其在更高的温度下成核和生长。 。这些结果表明,scPLA可以潜在地用作成核剂,以改善PLA膜的性能和透明度。

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