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Study on the crystallization of multiarm stars with a poly(ethyleneimine) core and poly(ϵ-caprolactone) arms of different length

机译:不同长度聚(乙基亚胺)核的多神恒星结晶的研究及不同长度的聚(ε-己内酯)臂

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摘要

Crystallization of multiarm star systems constituted by a core of poly(ethyleneimine) (PEI) and arms of poly(epsilon-caprolactone) (PCL) was studied by transmission electron microscopy, calorimetry and optical microscopy techniques. Three systems differing on the degree of polymerization of PCL were studied as well as binary mixtures constituted by systems differing on the length of PCL arms. Samples were able to crystallize from both diluted solutions and the melt state giving rise to well-formed lamellae and spherulites, respectively. Lamellae of samples with large PCL arms were highly regular and corresponded to elongated hexagonal crystals with an aspect ratio that decreased with the length of PCL arms.; A significant decrease on equilibrium melting temperatures, degree of crystallinity and glass transition temperature was detected for samples having short PCL arms. Crystallization kinetics were also highly influenced by the length of PCL arms, being both nucleation density and secondary nucleation constant increased as the length of PCL arms decreased. Crystallization of star mixtures having different PCL lengths was determined by the larger arms since they initiated the process and subsequently shorter arms were progressively incorporated. A thermal nucleation was characteristic of multiarm star mixtures due to the different crystallization temperature ranges of samples with large and short PCL arms, whereas samples with a homogeneous arm length rendered an athermal nucleation. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过透射电子显微镜,量热法和光学显微镜技术研究由聚(乙烯亚胺)(PEI)(PEI)(PEI)(PEI)(PEI)(PEI)和聚(ε-己内酯)(PCL)的臂构成的多神的星系的结晶。研究了PCL聚合程度不同的三种系统,以及由在PCL臂的长度上不同的系统构成的二元混合物。样品能够分别从稀释溶液和熔体状态结晶,并分别产生良好形成的薄片和球晶。具有大型PCL臂的样品的薄片高度规则,与细长的六方晶体相对应,纵横比随着PCL臂的长度降低。检测到具有短PCL臂的样品的样品对平衡熔化温度,结晶度和玻璃化转变温度的显着降低。结晶动力学也受到PCL臂长度的高度影响,随着PCL臂的长度降低而增加,均为成核密度和次级成核常数。通过较大的臂测定具有不同PCL长度的星形混合物的结晶,因为它们引发了该方法,随后逐步掺入了较短的臂。由于具有大而短的PCL臂的样品的不同的结晶温度范围,热成核是多立星混合物的特征,而均匀臂长度的样品使滴管成核。 (c)2015 Elsevier B.v.保留所有权利。

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