首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Photon correlation dynamics of unentangled star-shaped poly(epsilon-caprolactone)s with extremely small branches and its interaction with plasticization in miscible blend system
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Photon correlation dynamics of unentangled star-shaped poly(epsilon-caprolactone)s with extremely small branches and its interaction with plasticization in miscible blend system

机译:互混共混体系中具有极小分支的纠缠星形聚ε-己内酯的光子相关动力学及其与增塑的相互作用

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摘要

The dynamic effects of unentangled star-shaped polymers with extremely small branches on the plasticization of miscible polymer blends are investigated using ultra-small branched star poly(epsilon-caprolactone)s (USB-SPCLs), poly(vinyl chloride) (PVC), and their blends. Photon correlation dynamics of USB-SPCLs supports our previous suggestion that a whole USB-SPCL molecule acts as a single coarse-grain unit with dynamically-equivalent branches because of the extremely small branches, resulting in the total-molecular-weight-dependent Rouse dynamic behaviors of USB-SPCLs, regardless of the molecular architectures. The dynamic light scattering intensity autocorrelation curves of miscible PVC/USB-SPCL blends reveal that strong intermolecular interactions between PVC and USB-SPCL molecules determine the dynamic homogeneous behaviors of the blends despite their significantly different mobilities. The molecular motions of the blends depend on the total-molecular-weight-dependent Rouse dynamic behaviors of USB-SPCLs. These dynamic results clearly show the plasticization of the entangled neat linear PVC matrix by distinctive and rapid molecular mobility of USB-SPCLs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用超小支链星形聚(ε-己内酯)(USB-SPCL),聚氯乙烯(PVC)和聚对苯二甲酸乙二酯(PVC),研究了具有极小分支的无缠结星形聚合物对可混溶聚合物共混物塑化的动态影响。和它们的混合物。 USB-SPCL的光子相关动力学支持了我们先前的建议,即整个USB-SPCL分子由于具有非常小的分支而充当具有动态等效分支的单个粗粒单元,从而导致了总分子量依赖性Rouse动态USB-SPCL的行为,与分子结构无关。可混溶的PVC / USB-SPCL混合物的动态光散射强度自相关曲线表明,PVC和USB-SPCL分子之间的强分子间相互作用决定了混合物的动态均相行为,尽管它们的迁移率明显不同。共混物的分子运动取决于USB-SPCL的总分子量依赖性Rouse动力学行为。这些动态结果清楚地表明了USB-SPCL独特且快速的分子迁移性使缠结的线性PVC基质发生了增塑。 (C)2016 Elsevier Ltd.保留所有权利。

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