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Greatly accelerated crystallization of poly(lactic acid): cooperative effect of stereocomplex crystallites and polyethylene glycol

机译:大大加快了聚乳酸的结晶:立体复合微晶和聚乙二醇的协同作用

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摘要

Stereocomplex crystallite (SC) between enantiomeric poly(L-lactic acid) (PLLA) and poly(D-lactic acid) (PDLA), with largely improved thermal resistance and mechanical properties compared with PLLA and PDLA, is a good nucleating agent for poly(lactic acid) (PLA). The effects of SC and/or polyethylene glycol (PEG) on the crystallization behaviors of PLA were investigated. The non-isothermal and isothermal crystallization kinetics revealed that SC and PEG can separately promote the crystallization rate of PLA by heterogeneous nucleation and increasing crystal growth rate, respectively. However, their promoting effect is limited when used alone, and the modified PLA cannot crystallize completely under a cooling rate of 20 °C/min. When SC and PEG are both present, the crystallization rate of PLA is greatly accelerated, and even under a cooling rate of 40 °C/min, PLA can crystallize completely and get a high crystallinity owing to the excellent balance between simultaneously improved nucleation and crystal growth rate.
机译:对映体聚(L-乳酸)(PLLA)和聚(D-乳酸)(PDLA)之间的立体复合微晶(SC)与PLLA和PDLA相比具有大大改善的耐热性和机械性能,是一种良好的聚核成核剂(乳酸)(PLA)。研究了SC和/或聚乙二醇(PEG)对PLA结晶行为的影响。非等温和等温结晶动力学表明,SC和PEG可以分别通过异相成核和增加晶体生长速率分别提高PLA的结晶速率。但是,它们单独使用时,其促进作用受到限制,并且改性的PLA在20°C / min的冷却速率下无法完全结晶。当同时存在SC和PEG时,PLA的结晶速度大大加快,并且即使在40°C / min的冷却速度下,由于同时改善的成核和结晶之间的出色平衡,PLA可以完全结晶并获得高结晶度增长率。

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