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短链在缠结聚合物网络中的意外作用。

Unexpected Role of Short Chains in Entangled Polymer Networks.

作者信息

Chu Linlin, Zhao Yan, Graf Robert, Wang Xiao-Liang, Yao Ye-Feng

机构信息

Physics Department and Shanghai Key Laboratory of Magnetic Resonance, School of Physics and Electronic Science, East China Normal University, North Zhongshan Road 3663, 200062 Shanghai, People's Republic of China.

Key Laboratory of High-Performance Polymer Materials and Technology of Ministry of Education, Department of Polymer Science and Engineering, School of Chemistry and Chemical Engineering, State Key Laboratory of Coordination Chemistry, Nanjing National Laboratory of Nanostructures, Nanjing University, Nanjing 210023, People's Republic of China.

出版信息

ACS Macro Lett. 2022 May 17;11(5):669-674. doi: 10.1021/acsmacrolett.2c00179. Epub 2022 Apr 28.

Abstract

The knowledge of chain entanglement is key to our understanding of the relation between the viscoelastic properties of polymeric material and their microscopic structure and dynamics. This work conducted a detailed study on the role of short chains in the entangled polymer network. A series of poly(ethylene oxide) (PEO) mixtures with bimodal molecular weight distribution were selected for this study. H double-quantum (DQ) NMR combined with the rheology measurement was used to investigate the entangled polymer network. We found that short-chain polymers have the potential to significantly alter the entangled polymer network formed by long-chain polymers. Additionally, both the amount of chain ends and the size of the short-chain polymer were found to have clear disentanglement influences on the entangled polymer network. Moreover, adding low molecular weight PEO to the entangle framework formed by the high molecular weight PEO, resulted in the formation of inhomogeneous entangled polymer networks. The effect of low molecular weight polymers on the entangled polymer networks in PEO melts provides a perspective on the molecular level effect of molecular weight distribution (MWD) on entanglement polymer networks.

摘要

链缠结的知识是我们理解聚合材料粘弹性性质与其微观结构和动力学之间关系的关键。这项工作对短链在缠结聚合物网络中的作用进行了详细研究。本研究选择了一系列具有双峰分子量分布的聚环氧乙烷(PEO)混合物。采用H双量子(DQ)核磁共振结合流变学测量来研究缠结聚合物网络。我们发现短链聚合物有可能显著改变由长链聚合物形成的缠结聚合物网络。此外,发现链端数量和短链聚合物的尺寸对缠结聚合物网络都有明显的解缠结影响。而且,向由高分子量PEO形成的缠结框架中添加低分子量PEO,会导致形成不均匀的缠结聚合物网络。低分子量聚合物对PEO熔体中缠结聚合物网络的影响为分子量分布(MWD)对缠结聚合物网络的分子水平影响提供了一个视角。

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