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首页> 外文期刊>Macromolecules >Physical Networks from Multifunctional Telechelic Star Polymers: A Rheological Study by Experiments and Simulations
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Physical Networks from Multifunctional Telechelic Star Polymers: A Rheological Study by Experiments and Simulations

机译:来自多功能伸缩星聚合物的物理网络:实验和模拟的流变研究

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摘要

The equilibrium mechanical properties of a cross-linked gel of telechelic star polymers are studied by rheology and Brownian dynamics simulations. The Brownian dynamics model consists of cores to which Rouse arms are attached. Forces between the cores are obtained from a potential of mean force model developed by Likos and co-workers. Both experimentally and in the simulations, networks were created by attaching sticker groups to the ends of the arms of the polymers, which were next allowed to form bonds among them in a one to one fashion. Simulations were sped up by solving the Rouse dynamics exactly. Moreover, the Rouse model was extended to allow for different frictions on different beads. In order to describe the rheology of the non-cross-linked polymers, it had to be assumed that bead frictions increase with increasing bead number along the arms. This friction model could be transferred to describe the rheology of the network without any adjustments other than an overall increase of the frictions due to the formation of bonds. The slowing down at intermediate times of the network rheology compared to that of the non-cross-linked polymers is well described by the model. The percentage of stickers involved in forming inter-star bonds in the system was determined to be 25%, both from simulations and from an application of the Green–Tobolsky relation to the experimental plateau value of the shear relaxation modulus. Simulations with increasing cross-link percentages revealed that on approaching the gel transition the shear relaxation modulus develops an algebraic tail, which gets frozen at a percentage of maximum cross-linking of about 11%.
机译:通过流变和褐色动力学模拟研究了遥联的遥联凝胶的交联凝胶的平衡力学性能。布朗动力学模型由附加争吵的核心组成。核之间之间的力是由利基和同事开发的平均力模型的潜力获得的。通过实验和在模拟中,通过将贴纸基团连接到聚合物的臂的末端来创建网络,其在接下来使其在其中一种时尚中形成键。通过精确解决振荡动态来加速模拟。此外,延长rouse模型以允许不同珠子的不同摩擦。为了描述非交联聚合物的流变学,必须假设珠摩擦随着沿着臂的增加而增加。该摩擦模型可以转移以描述网络的流变学,而不是由于键的形成而导致的摩擦的总体增加。与非交联聚合物的中间时间的中间时间放慢了与非交联聚合物相比的速度很好地描述。在系统中形成星形键的粘附物的百分比被确定为25%,既可从仿真和绿色托Bolsky关系应用于剪切弛豫模量的实验平台值。随着交叉链路百分比的增加,仿真显示在接近凝胶过渡时,剪切弛豫模量显影代数尾,其以最大交联约11%的百分比被冷冻。

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  • 来源
    《Macromolecules》 |2018年第8期|共15页
  • 作者单位

    Computational Chemical Physics Faculty of Science and Technology and MESA+ Institute for Nanotechnology University of Twente P.O. Box 217 7500 AE Enschede The Netherlands;

    Institute of Electronic Structure &

    Laser FORTH P.O. Box 1527 70013 Heraklion Crete Greece;

    Department of Chemistry Carnegie Mellon University Pittsburgh Pennsylvania 15213 United States;

    CNRS MATEIS University of Lyon INSA-Lyon UMR5510-7 avenue Jean Capelle F-69621 Villeurbanne France;

    Department of Chemistry Carnegie Mellon University Pittsburgh Pennsylvania 15213 United States;

    Institute of Electronic Structure &

    Laser FORTH P.O. Box 1527 70013 Heraklion Crete Greece;

    Computational Chemical Physics Faculty of Science and Technology and MESA+ Institute for Nanotechnology University of Twente P.O. Box 217 7500 AE Enschede The Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高分子化学(高聚物);
  • 关键词

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