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通过非线性流变学和H双量子核磁共振探究端基官能化聚丁二烯/有机粘土纳米复合凝胶在屈服前后的动态结构演变

Probing the Dynamic Structural Evolution of End-Functionalized Polybutadiene/Organo-Clay Nanocomposite Gels before and after Yielding by Nonlinear Rheology and H Double-Quantum NMR.

作者信息

Peng Wansu, Feng Chengdong, Hou Jiawen, Zhang Rongchun, Sun Pingchuan, Gao Yun, Wang Xiaoliang

机构信息

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, Nanjing University, Nanjing 210023, China.

Key Laboratory of Functional Polymer Materials of Ministry of Education and College of Chemistry and School of Physics, Nankai University, Tianjin 300071, China.

出版信息

Polymers (Basel). 2022 Apr 8;14(8):1518. doi: 10.3390/polym14081518.

Abstract

Understanding the structural evolution process after the yielding of networks in polymer nanocomposites can provide significant insights into the design and fabrication of high-performance nanocomposites. In this work, using hydroxyl-terminated 1,4-polybutadiene (HTPB)/organo-clay nanocomposite gel as a model, we explored the yielding and recovery process of a polymer network. Linear rheology results revealed the formation of a nanocomposite gel with a house-of-cards structure due to the fully exfoliated 6 to 8 wt% organo-clays. Within this range, nonlinear rheologic experiments were introduced to yield the gel network, and the corresponding recovery processes were monitored. It was found that the main driving force of network reconstruction was the polymer-clay interaction, and the rotation of clay sheets played an important role in arousing stress overshoots. By proton double-quantum (H DQ) NMR spectroscopy, residual dipolar coupling and its distribution contributed by HTPB segments anchored on clay sheets were extracted to unveil the physical network information. During the yielding process of a house-of-cards network, e.g., 8 wt% organo-clay, nearly one-fourth of physical cross-linking was broken. Based on the rheology and H DQ NMR results, a tentative model was proposed to illustrate the yielding and recovery of the network in HTPB/organo-clay nanocomposite gel.

摘要

了解聚合物纳米复合材料中网络屈服后的结构演变过程,可为高性能纳米复合材料的设计和制造提供重要见解。在这项工作中,我们以羟基封端的1,4-聚丁二烯(HTPB)/有机粘土纳米复合凝胶为模型,探索了聚合物网络的屈服和恢复过程。线性流变学结果表明,由于6至8 wt%的有机粘土完全剥离,形成了具有纸牌屋结构的纳米复合凝胶。在此范围内,引入非线性流变学实验使凝胶网络屈服,并监测相应的恢复过程。研究发现,网络重构的主要驱动力是聚合物-粘土相互作用,粘土片层的旋转在引起应力超调方面起重要作用。通过质子双量子(H DQ)核磁共振光谱,提取了锚定在粘土片层上的HTPB链段贡献的残余偶极耦合及其分布,以揭示物理网络信息。在纸牌屋网络的屈服过程中,例如8 wt%的有机粘土,近四分之一的物理交联被破坏。基于流变学和H DQ NMR结果,提出了一个初步模型来说明HTPB/有机粘土纳米复合凝胶中网络的屈服和恢复。

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